TEM, FE-SEM, STEM-EDS
2026 · 1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring
CuBTA powder · Powder · Powder morphology and elemental mapping
SEM and FE-SEM imaging, including cross-sections and morphology analysis.
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1,262 measurements
2026 · 1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring
CuBTA powder · Powder · Powder morphology and elemental mapping
2026 · 1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring
NiBTA powder · Powder · Powder morphology and elemental mapping
2026 · A conductive metal-organic framework-modified electrode for sensitive electrochemiluminescent detection of cardiac Troponin I
SPCE/Cu3(HHTP)2 · Electrode · Elemental composition of Cu3(HHTP)2 compared with theoretical values.
2026 · A conductive metal-organic framework-modified electrode for sensitive electrochemiluminescent detection of cardiac Troponin I
SPCE/Cu3(HHTP)2 · Electrode · Surface morphology of Cu3(HHTP)2 drop-coated onto SPCE.
2026 · Activating a Metallization Switch for Record Hydrogen Evolution in Single-Atom Modified Polar MOF Piezocatalysts
Ni SAs@UiO-66-NH2 after piezocatalysis · Powder · Ni SAs@UiO-66-NH2 characterised before and after long-term ultrasonic piezocatalytic reaction.
2026 · Bimetallic conductive MOF single crystals designed as high-performance anodes for lithium-ion batteries
CNH as-synthesised powder · Powder · Energy-dispersive X-ray spectroscopy attached to SEM for C, O, Co and Ni distribution.
2026 · Bimetallic conductive MOF single crystals designed as high-performance anodes for lithium-ion batteries
CH as-synthesised powder · Powder · CH morphology and SAED from supplementary Fig. S2-S3 plus main-text interpretation.
2026 · Bimetallic conductive MOF single crystals designed as high-performance anodes for lithium-ion batteries
CNH as-synthesised powder · Powder · FE-SEM SUPER 55/SAPPHIRE and HRTEM JEM-2100; CNH morphology, lattice spacing and single-crystal SAED.
2026 · Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification
Bi-HHTP powder/nanobelts · Powder · Morphology and elemental mapping of pristine Bi-HHTP.
2026 · Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification
COF powder/microspheres · Powder · Morphology and elemental mapping of pristine COF.
2026 · Bismuth-based conductive MOF/COF hybrids enable efficient electrochemical heavy metal ion quantification
Bi-HHTP/COF composite powder · Powder · Morphology of Bi-HHTP/COF hybrid.
2026 · Construction of a high-performance electrochemical sensor based on intrinsically conductive Co-HHTQ-MOF for imidacloprid detection
Co-HHTQ-MOF powder · Powder · Morphological comparison of HHTQ ligand and as-synthesised Co-HHTQ-MOF.
2026 · Electronically Conductive Metal−Organic Framework With Photoelectric and Photothermal Effect as a Stable Cathode for High-Temperature Photo-Assisted Zn/Sn-Air Battery
as-synthesised Ni2DDA black powder · Powder · Morphology, lattice fringes and elemental distribution of Ni2DDA.
2026 · Facile Preparation of Polymorphic Metal–Organic Framework Nanostructures as Microwave Absorbers via One-Pot Hydrothermal Reaction
Cu-TCNQ powder · Powder · As-synthesised Cu-TCNQ nanorod morphology and Cu/N mapping.
2026 · Facile Preparation of Polymorphic Metal–Organic Framework Nanostructures as Microwave Absorbers via One-Pot Hydrothermal Reaction
Fe-TCNQ powder · Powder · As-synthesised Fe-TCNQ urchin-like morphology and Fe/N mapping.
2026 · Facile Preparation of Polymorphic Metal–Organic Framework Nanostructures as Microwave Absorbers via One-Pot Hydrothermal Reaction
Ni-TCNQ powder · Powder · As-synthesised Ni-TCNQ layered morphology and Ni/N mapping.
2026 · In-situ growth of high-crystallinity M3(hexaaminotriphenylene)2 (M = Co, Ni) thin film for field-effect transistor-based glucose biosensor
Co/Ni-HITP (DMF) thin film · Thin Film · Au interdigital electrode dimensions and morphology before in-situ Co/Ni-HITP film growth
2026 · In-situ growth of high-crystallinity M3(hexaaminotriphenylene)2 (M = Co, Ni) thin film for field-effect transistor-based glucose biosensor
Co/Ni-HITP (DMF) thin film · Thin Film · Morphology and thickness of Co/Ni-HITP (DMF) membrane/film
2026 · In-situ growth of high-crystallinity M3(hexaaminotriphenylene)2 (M = Co, Ni) thin film for field-effect transistor-based glucose biosensor
Co/Ni-HITP (water) thin film · Thin Film · SEM morphology of water-grown Co/Ni-HITP membrane
2026 · In-situ growth of high-crystallinity M3(hexaaminotriphenylene)2 (M = Co, Ni) thin film for field-effect transistor-based glucose biosensor
Co-HITP film · Thin Film · SI control comparing Co-HITP prepared with DMF as solvent versus deionized water as solvent
2026 · Intrinsically Conductive π-d Conjugated Layers with Co–N4 Active Sites for Efficient Nitrate Electrocatalysis and Zinc-Nitrate Batteries
Co3(HITP)2 drop-cast carbon paper electrode · Electrode · High-resolution Co and N XPS and SEM images after nitrate-reduction cycling; SEM after zinc-nitrate battery cycling in SI.
2026 · Intrinsically Conductive π-d Conjugated Layers with Co–N4 Active Sites for Efficient Nitrate Electrocatalysis and Zinc-Nitrate Batteries
Co3(HITP)2 powder · Powder · SEM on JEOL JSM-IT500HR; STEM/EELS on aberration-corrected JEOL JEM-ARM200CF at 80 kV with C K, N K, O K and Co L edge maps.
2026 · Investigation of charge transport and Schottky properties in a 1D Cd(II) coordination polymer featuring 9-anthracenecarboxylic acid
as-synthesised bulk CP1 · Powder · Zeiss Gemini SEM 450 microscope; CP1 and CP1-based thin film shown in SI Fig. S5.
2026 · Isoreticular Modulation of Electrical Conduction and Magnetic Properties in Semiconducting Lanthanide-based Based Metal−Organic Frameworks
Eu-HHTP powder · Powder
2026 · Isoreticular Modulation of Electrical Conduction and Magnetic Properties in Semiconducting Lanthanide-based Based Metal−Organic Frameworks
Gd-HHTP powder · Powder
2026 · Isoreticular Modulation of Electrical Conduction and Magnetic Properties in Semiconducting Lanthanide-based Based Metal−Organic Frameworks
Sm-HHTP powder · Powder
2026 · Isoreticular Modulation of Electrical Conduction and Magnetic Properties in Semiconducting Lanthanide-based Based Metal−Organic Frameworks
Tb-HHTP powder · Powder
2026 · Microfluidic Printing-Induced Dynamic Splitting of Conductive MOF to Expose High-Density Active Sites for Boosted CO2 Electroreduction
MF-cMOFQx/ty series · Nanosheet · SEM/TEM of MF-cMOFQx/t5 and MF-cMOFQ1.28/ty samples.
2026 · Microfluidic Printing-Induced Dynamic Splitting of Conductive MOF to Expose High-Density Active Sites for Boosted CO2 Electroreduction
ST-cMOF · Powder · SEM and TEM morphology characterisation of ST-cMOF.
2026 · Nanostructured zinc-doped nickel/iron metal–organic framework electrode material for an efficient energy storage
Fe-MOF powder · Powder · SEM micrographs used to compare particle morphology
2026 · Nanostructured zinc-doped nickel/iron metal–organic framework electrode material for an efficient energy storage
Ni/Fe-MOF control powder · Powder · SEM micrographs used to compare particle morphology
2026 · Nanostructured zinc-doped nickel/iron metal–organic framework electrode material for an efficient energy storage
Ni-MOF powder · Powder · SEM micrographs used to compare particle morphology
2026 · Nanostructured zinc-doped nickel/iron metal–organic framework electrode material for an efficient energy storage
Pyrolysed Zn-doped Ni/Fe-MOF-derived carbon powder · Powder · SEM micrographs used to compare particle morphology
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Ca-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Co-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Cu-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Mg-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Ni-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure and Electrical Transport Properties of Metal Cate-Cholate Frameworks: The Metal Center Matters†
Zn-HHTP powder sample · Powder · Quanta FEG 250; 7 mm working distance, 10 kV beamline, 10^-6 torr chamber; sample on carbon conductive tape/aluminum plate.
2026 · Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes
Cd2(TTFTB) MOF powder/crystals · Powder · Hitachi FlexSEM 1000; 15 kV backscattered electrons for EDX
2026 · Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes
TTF-hybrid-MOF powder/crystals · Powder · Hitachi FlexSEM 1000; 15 kV backscattered electrons for EDX
2026 · Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes
Cd2(TTFTB) MOF powder/crystals · Powder · Hitachi FlexSEM 1000; 5 kV secondary electrons; high vacuum; 100x
2026 · Structure–Property Engineering of Redox-Active Tetrathiafulvalene- and Bipyridine-Based Metal–Organic Frameworks for Battery Cathodes
TTF-hybrid-MOF powder/crystals · Powder · Hitachi FlexSEM 1000; 5 kV secondary electrons; high vacuum; 100x
2026 · Sub-Femtomolar, Label-Free Small-Molecule Sensing with Nanoarchitectonic Metal-Organic Frameworks
CuHITP/Cu(OH)2 extended-gate electrode · Electrode · Converted CuHITP film morphology and elemental incorporation after solid-phase conversion.
2026 · Sub-Femtomolar, Label-Free Small-Molecule Sensing with Nanoarchitectonic Metal-Organic Frameworks
Cu(OH)2 nanoarray on patterned electrode · Electrode · Cu(OH)2 nanoarray morphology after APS/NaOH growth.
2026 · Tailoring Li-ion Storage and Transport in Two-Dimensional Conjugated Metal-Organic Frameworks via Precise Nitrogen Incorporation
Cu-N2-OHBA bulk powder crystals · Powder
2026 · Tailoring Li-ion Storage and Transport in Two-Dimensional Conjugated Metal-Organic Frameworks via Precise Nitrogen Incorporation
Cu-N2-OHBA bulk powder crystals · Powder · SEM of bulk crystals; HRTEM along layer-stacking and in-plane directions
2026 · Tailoring Li-ion Storage and Transport in Two-Dimensional Conjugated Metal-Organic Frameworks via Precise Nitrogen Incorporation
Cu-N4-OHBA bulk powder crystals · Powder
2026 · Tailoring Li-ion Storage and Transport in Two-Dimensional Conjugated Metal-Organic Frameworks via Precise Nitrogen Incorporation
Cu-N4-OHBA bulk powder crystals · Powder · SEM of bulk crystals; HRTEM along layer-stacking and in-plane directions
2025 · 2D Tetrathiafulvalene-Based Metal–Organic Framework Linked by Hydrogen Bonding for Boosting Long-Cycle Stability of Lithium-Ion Batteries
Red-black bulky crystals of m-TTFTB-Co-MOF · Single Crystal · SEM images of crystals at different magnifications and after activation.
2025 · A Conductive Cu-Based Metal–Organic Framework Ribbon with High-Density Redox-Active Centers as Cathode for Stable High-Capacity Lithium-Ion Batteries
activated DDA-Cu MOF powder · Powder · Morphology and lattice imaging of DDA-Cu powder
2025 · A conductive MOF with bimetallic spontaneously recycled systems as a signal enhancer for the ultrasensitive detection of T-2 toxin using an electrochemical aptasensor
C-Ni1.5Co1.5(HITP)2 powder · Powder · Low and high magnification SEM images of Ni3(HITP)2, Ni2.4Co0.6(HITP)2, Ni1.5Co1.5(HITP)2 and Ni0.6Co2.4(HITP)2.
2025 · A Cu-based electronically conducting metal–organic framework with π–d conjugation for cathode and anode modification in aqueous zinc-ion batteries
Zn@DDA-Cu composite anode · Electrode · Zn anode morphology before cycling and after 30 cycles at 0.5 mA cm-2/0.5 mAh cm-2.
2025 · A Cu-based electronically conducting metal–organic framework with π–d conjugation for cathode and anode modification in aqueous zinc-ion batteries
Zn@DDA-Cu composite anode · Electrode · DDA-Cu-coated zinc anode structural, wetting and conductivity characterisation.
2025 · A Cu-based electronically conducting metal–organic framework with π–d conjugation for cathode and anode modification in aqueous zinc-ion batteries
Zn@DDA-Cu-1 · Electrode · Zn@DDA-Cu-1 and Zn@DDA-Cu-2 at 0.5 mA cm-2/0.5 mAh cm-2 and 1 mA cm-2/1 mAh cm-2.
2025 · A mixed-organic ligands Ru(bpy)32+@Zn mMOFs-NH2 nanoreactors integrated co-reaction accelerator and morphologic regulator for the electrochemiluminescence detection of ATP
Ru(bpy)3(2+)@Zn mMOFs-NH2 · Nanosheet · SEM image and C, N, O, Zn, Ru elemental maps of Ru(bpy)3(2+)@Zn mMOFs-NH2
2025 · A mixed-organic ligands Ru(bpy)32+@Zn mMOFs-NH2 nanoreactors integrated co-reaction accelerator and morphologic regulator for the electrochemiluminescence detection of ATP
Ru(bpy)3(2+)@Zn MOFs · Nanosheet · Morphology of BDC-only Ru(bpy)3(2+)@Zn MOFs
2025 · A mixed-organic ligands Ru(bpy)32+@Zn mMOFs-NH2 nanoreactors integrated co-reaction accelerator and morphologic regulator for the electrochemiluminescence detection of ATP
Ru(bpy)3(2+)@Zn mMOFs-NH2 · Nanosheet · Morphology of mixed-ligand Ru(bpy)3(2+)@Zn mMOFs-NH2
2025 · A mixed-organic ligands Ru(bpy)32+@Zn mMOFs-NH2 nanoreactors integrated co-reaction accelerator and morphologic regulator for the electrochemiluminescence detection of ATP
Ru(bpy)3(2+)@Zn MOFs-NH2 · Powder · Morphology of NH2-BDC-only Ru(bpy)3(2+)@Zn MOFs-NH2
2025 · A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide
Ni-PTC-25 · Powder · Control sample formed at 25 degC; main SEM and SI TEM images.
2025 · A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide
Ni-PTC-60 · Powder · SEM/AFM of nanobelts; AFM thickness profile; SI TEM.
2025 · A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide
Ni-PTC-80 · Powder · Control sample formed at 80 degC; main SEM and SI TEM images.
2025 · A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide
Ni-PTC-60 RRDE catalyst electrode · Electrode · 10,000 CV cycles in 0.1 M KOH; SI states CV in 0.6-0.8 V_RHE for electrode stability.
2025 · Ammonia-Assisted Chemical Vapor Deposition Growth of Two-Dimensional Conjugated Coordination Polymer Thin Films
Cu-BHT-w NH3-assisted CVD thin film · Thin Film · Cu-BHT-w structural/morphological confirmation and PXRD comparison with Cu-BHT-o.
2025 · Ammonia-Assisted Chemical Vapor Deposition Growth of Two-Dimensional Conjugated Coordination Polymer Thin Films
Cu-HHB-w NH3-assisted CVD thin film · Thin Film · Cu-HHB-w structural/morphological confirmation and PXRD comparison with Cu-HHB-o.
2025 · An optoelectronic synapse based on Cu-BHT MOF for multi-wavelength optical logic gates and neuromorphic vision system
Cu-BHT thin film on ultra-white glass substrate · Thin Film · Surface morphology and elemental mapping of Cu-BHT film on glass substrate.
2025 · Asymmetrical Substitution Manipulates Stacking Modes in 2D Conductive MOF Crystals
Cu3FHHTP2 blue powder/rod crystals · Powder · SEM at 3 or 4 kV; compares Cu3HHTP2, Cu3FHHTP2 and Cu3F2HHTP2 morphology.
2025 · Beyond diffusion: ion and electron migration contribute to charge transport in redox-conducting metal-organic frameworks
Zn(NDI)@FTO thin film · Thin Film · SEM at 3 kV; PXRD with Cu Kalpha (lambda = 0.15418 nm), 45 kV and 40 mA, parallel beam optics
2025 · Bimetal MOF nanosheets as efficient anode materials for lithium-ion batteries
Co1/2Fe1/2-MOF LIB anode electrode · Electrode · Co1/2Fe1/2-MOF electrode inspected in discharged, charged, pristine, and cycled states.
2025 · Bimetal MOF nanosheets as efficient anode materials for lithium-ion batteries
CoxFe1-x-MOF powder/nanosheet series · Nanosheet · SEM images for all compositions; TEM/SAED/EDS mapping emphasised for Co1/2Fe1/2-MOF.
2025 · Bimetal MOF nanosheets as efficient anode materials for lithium-ion batteries
Co1/2Fe1/2-MOF LIB anode electrode · Electrode · Rendered SI shows XRD of dried Co1/2Fe1/2-MOF electrode material, SEM of dried electrode material, TEM-SAED of Co1/2Fe1/2-MOF, and XRD/SEM after 10 cycles.
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
Cu2TBA film, 60 min · Thin Film · Cu2TBA film after 60 min reaction
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
face-on Cu3(HHTP)2 film on silicon, 60 min · Thin Film · Top-view/cross-sectional SEM; simulated, in-plane and out-of-plane XRD
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
edge-on Cu3(HHTP)2 film from air-saturated precursor · Thin Film · air-saturated Cu3(HHTP)2 growth and edge-on orientation
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
face-on Cu3(HHTP)2 growth-series films · Thin Film · O2-saturated Cu3(HHTP)2 growth from 1 min to 4 h
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
edge-on Ni3(HITP)2 film · Thin Film · Edge-on Ni3(HITP)2 film on silicon
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
face-on Ni3(HITP)2 film, 60 min · Thin Film · Top-view/cross-sectional SEM and in-plane/out-of-plane XRD
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
patterned Cu3(HHTP)2 films on varied substrates · Thin Film · Patterned Cu3(HHTP)2 on glass, PDMS, cotton, parylene, PVC, nylon and other supports
2025 · Catalysis-Assisted Synthesis of Two-Dimensional Conductive Metal–Organic Framework Films with Controllable Orientation
Zn3(HHTP)2 film, 30 min · Thin Film · Zn3(HHTP)2 film after 30 min reaction
2025 · Catalytic Metal-Organic Framework-Functionalized Inverse-Opal Architectured Polymeric Separator for High-Performance Li-S Batteries
PIO-3 separator · Thin Film · Top/bottom surface and O2 plasma etched PIO membranes; scale bar 500 nm.
2025 · Catalytic Metal-Organic Framework-Functionalized Inverse-Opal Architectured Polymeric Separator for High-Performance Li-S Batteries
ZIF-PIO-3 separator · Thin Film · ZIF-67 functional layer on PIO-3 and PIO-5; top and cross-section images.
2025 · Comparing Ag-O coordinated AgMOF-5 and Ag-N coordinated Ag nanosphere catalytic polymers for real time monitoring of H2O2 level in cancer cells
whitish shining Ag nanosphere powder · Powder · Morphology, elemental mapping, TEM and AFM characterisation of Ag nanosphere.
2025 · Comparing Ag-O coordinated AgMOF-5 and Ag-N coordinated Ag nanosphere catalytic polymers for real time monitoring of H2O2 level in cancer cells
greyish AgMOF powder · Powder · Morphology, elemental mapping, TEM and AFM characterisation of AgMOF.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Cu-on-paper no-TBMAMS failed synthesis control · Thin Film · No-TBMAMS Cu-on-paper control; triangular prismatic crystals probed by EDX.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Cu3(HITP)2 on white paper time-series samples · Thin Film · Optimised Cu-on-paper sample prepared with ligand, ammonia and TBMAMS electrolyte.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Cu3(HITP)2 on white paper time-series samples · Thin Film · Cu nanoparticles on paper imaged after 0 min, 10 min, 1 h and 24 h submersion; 10 um and 1 um scale bars.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Cu3(HITP)2 on cotton fabric · Thin Film · Cu3(HITP)2 on cotton, glass, Au(111), with supporting SI images on paper; 1 h growth.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Ni3(HITP)2 on cotton fabric · Thin Film · Ni3(HITP)2 on fabric, gold, glass and paper after 1 h growth.
2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors
Ni3(HITP)2 on white paper time-series samples · Thin Film · Ni nanoparticles on paper imaged after the same submersion time series as Cu samples.
2025 · Conductive Metal–Organic Frameworks Anchoring on V3O7·H2O Nanobelts Toward High-Capacity and Long-Life Zinc-Ion Batteries
VO@Cu-HHTP-2 · Nanosheet · SEM on all VO and VO@Cu-HHTP variants; TEM/HRTEM and elemental mapping on Cu-HHTP and VO@Cu-HHTP-2.
2025 · Conductive MOFs with tailored polarization loss for broadband absorption at ultrathin thickness
CuZn-1 · Powder · FESEM Nova Nano SEM 450 and TEM JEOL JLM-2100F; CuZn-1 HRTEM and EDS mapping.
2025 · Construction of 1D Molecular Conductive Wires Through a Polarized Gene Weaving Strategy for Efficient Electromagnetic Wave Absorption
Pristine CuTBTT-1D powder/ribbon network · Powder · SEM on JSM-7800F PRIME; TEM on JEOL JEM-2100Plus.
2025 · Construction of 1D Molecular Conductive Wires Through a Polarized Gene Weaving Strategy for Efficient Electromagnetic Wave Absorption
Pristine CuTBTT-2D nanosheets · Powder · SEM on JSM-7800F PRIME; TEM on JEOL JEM-2100Plus.
2025 · Construction of a portable and sensitive electrochemical immunosensor for the rapid detection of erythromycin based on semiconductive bimetallic MOF
As-synthesised CuxFe3-x(HHTP)2 powder · Powder · Morphology and elemental mapping of CuxFe3-x(HHTP)2 particles.
2025 · Construction of nanozyme based with mixed valence manganese oxide loaded on defective metal-organic frameworks for sensitive detection of biomarker procalcitonin
dPCN-224 nanoparticles · Powder · SEM image of dPCN-224 nanoparticles.
2025 · Continuous and reversible tuning of inter-layer spacings in two-dimensional conductive metal organic frameworks
Heat-treated Ga9HHTP4 (HT-Ga9HHTP4) · Powder · SEM before/after heating; Zeiss Merlin high-resolution SEM with InLens detector.
2025 · Contorted hexabenzocoronene-based two-dimensional conductive metal-organic framework enabled electrochemical platform for monitoring of rutin in pharmaceuticals and biological samples
Cu3(HBC)2/SPE · Electrode · Response to 30 uM rutin over four successive measurements and four independently prepared Cu3(HBC)2/SPEs.
2025 · Contorted hexabenzocoronene-based two-dimensional conductive metal-organic framework enabled electrochemical platform for monitoring of rutin in pharmaceuticals and biological samples
Cu3(HBC)2 powder · Powder · SEM images of Cu3(HBC)2 and Cu3(HBC)2/SPE for flower-like nanosheet morphology.
2025 · Controlling the Spatiotemporal Self-Organization of Stimuli-Responsive Nanocrystals under Out-of-Equilibrium Conditions
1D reaction-diffusion Ni3(HITP)2 Liesegang precipitation zones · Powder · SEM on Thermo Scientific Helios 5 CX DualBeam; ImageJ analysis of particles from each zone.
2025 · Controlling the Spatiotemporal Self-Organization of Stimuli-Responsive Nanocrystals under Out-of-Equilibrium Conditions
2D RD Ni3(HITP)2 Zone 3 particles · Powder · Particle size distribution determined from 70 particles from each 2D zone.
2025 · Copper-Based Two-Dimensional Conductive Metal-Organic Framework Thin Films for Ultrasensitive Detection of Perfluoroalkyls in Drinking Water
Pristine Cu-HHTP thin films for structural and spectroscopic characterisation · Thin Film · FEI Magellan 400 XHR SEM with FEG source on films grown on ITO-coated glass or Si; EDX maps for Cu, O, and other elements.
2025 · Cu─X Bonds Regulated Conduction and Polarization Loss in Conductive Metal-Organic Framework Under Electromagnetic Field
As-synthesised Cu3(HHTP)2 powder · Powder · SEM SU-70; HR-TEM JEM 2100F; EDS elemental analyses.
2025 · Cu─X Bonds Regulated Conduction and Polarization Loss in Conductive Metal-Organic Framework Under Electromagnetic Field
As-synthesised Cu3(HITP)2 powder · Powder · SEM SU-70; HR-TEM JEM 2100F; EDS elemental analyses.
2025 · Cu─X Bonds Regulated Conduction and Polarization Loss in Conductive Metal-Organic Framework Under Electromagnetic Field
As-synthesised Cu3(THT)2 powder · Powder · SEM SU-70; HR-TEM JEM 2100F; EDS elemental analyses.
2025 · Development of an electrochemiluminescence aptasensor combining covalent-triazine framework emitter with exonuclease III-driven DNA walker for sensitive CEA detection
purified CTF powder · Powder · Morphology and lattice-fringe inspection of CTF.
2025 · Development of an electrochemiluminescence aptasensor combining covalent-triazine framework emitter with exonuclease III-driven DNA walker for sensitive CEA detection
CuxMn3-x(HITP)2 powder · Powder · Morphology, lattice spacing, and elemental mapping of CuxMn3-x(HITP)2.
2025 · Dirac-cone induced metallic conductivity in Cu3(HHTP)2: high-quality MOF thin films fabricated via ML-driven robotic synthesis
Optimised Cu3(HHTP)2 SURMOF thin film · Thin Film · XL30 ESEM FEG at 10 kV; Jupiter AFM thickness measurements
2025 · Dual single atomic Fe-Ni sites in N‑doped nanoporous carbon for high-efficiency potassium periodate activation toward pollutant abatement
Fe2Ni1-NC-900 · Powder · TEM (JEOL JEM-2100F), SEM (Hitachi Regulus 8230) and EDS mapping used to observe morphology, graphitic lattice and elemental distribution.
2025 · Dual-metal sites enable conductive metal-organic frameworks with extraordinary high capacitance for transparent energy storage devices
CuNi-HHTP nanorods · Powder · Morphology, lattice fringes, diffraction, and elemental distribution of CuNi-HHTP.
2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework
CAT-1 Film · Electrode · CAT-1 Film cross-section/surface morphology and surface EDS composition.
2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework
Cu(OH)2 Network precursor on paper filter · Thin Film · Cu(OH)2 network precursor on paper filter; SI Figs. S5-S8 and Table S2.
2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework
10CAT-1 Film · Electrode · 10CAT-1 Film morphology, cross-section thickness, surface size histogram and EDS composition from main Fig. 3 and SI Figs. S6-S8/Table S2.
2025 · Electrochemical Synthesis of Cu3(HHTP)2Metal–Organic Frameworks from Cu Nanoparticles for Chemiresistive Gas Sensing
Electrochemically synthesised Cu3(HHTP)2 on Pt/glass IDE (2 h growth) · Electrode · Zeiss Merlin, InLens detector, 3 kV, 100 pA, 7 mm WD; separate samples at 0 min, 10 min, 2 h; ImageJ particle sizing
2025 · Employing Triphenylene-Based, Layered, Conductive Metal-Organic Framework Materials as Electrochemical Sensors for Nitric Oxide in Aqueous Media
Ni3(HHTP)2 microcrystalline powder · Powder · Powder morphology for Co3(HHTP)2, Ni3(HHTP)2, Cu3(HHTP)2 and Zn3(HHTP)2.
2025 · Engineering the structures of ZnCo-MOFs via a ligand effect for enhanced supercapacitor performance
as-synthesised ZnCo-MOF-HMIM powder · Powder · EDS elemental maps and spectra for ligand-mediated ZnCo-MOFs.
2025 · Engineering the structures of ZnCo-MOFs via a ligand effect for enhanced supercapacitor performance
as-synthesised ZnCo-MOF-ABDC powder · Powder · Morphology and size of ligand-mediated ZnCo-MOF powders; SEM coupled to EDS and TEM JSM-2100F.
2025 · Engineering the structures of ZnCo-MOFs via a ligand effect for enhanced supercapacitor performance
as-synthesised ZnCo-MOF-BDC powder · Powder · Morphology and size of ligand-mediated ZnCo-MOF powders; SEM coupled to EDS and TEM JSM-2100F.
2025 · Engineering the structures of ZnCo-MOFs via a ligand effect for enhanced supercapacitor performance
as-synthesised ZnCo-MOF-HMIM powder · Powder · Morphology and size of ligand-mediated ZnCo-MOF powders; SEM coupled to EDS and TEM JSM-2100F.
2025 · Enhanced conductivity and energy storing performances of 3D bimetallic conductive metal-organic frameworks based on linear π-conjugated thiazole for supercapacitors
Ni3Co1-DPTTZ-MOF powder · Powder · SEM morphology and elemental maps for Ni3Co1-DPTTZ-MOF
2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks
Cu-S-HHS solvothermal powder · Powder · Powders pressed on carbon tape for SEM; TEM powder dispersed in methanol on ultrathin carbon film.
2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks
Cu-Se-HHS solvothermal powder · Powder · Powders pressed on carbon tape for SEM; TEM powder dispersed in methanol on ultrathin carbon film.
2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks
Cu-Te-HHS solvothermal powder · Powder · Powders pressed on carbon tape for SEM; TEM powder dispersed in methanol on ultrathin carbon film.
2025 · Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs
Co-Ni(TPA)-2 · Powder · EDX spectrum and elemental mapping for Co-Ni(TPA)-2.
2025 · Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs
Co-Ni(TPA)-2 · Powder · Low and high magnification SEM images.
2025 · Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs
Ni(TPA) · Powder · Low and high magnification SEM images.
2025 · Enhancing electrochemical hydrogen storage in nickel-based metal-organic frameworks (MOFs) through zinc and cobalt doping as bimetallic MOFs
Zn-Ni(TPA)-2 · Powder · Low and high magnification SEM images.
2025 · Enhancing pancreatic cancer ablation efficiency: bipolar IRE with conductive MOF
Ni3(HITP)2@PDA nanoparticles · Powder · Morphology and structural-retention comparison of pristine Ni3(HITP)2 and PDA-coated Ni3(HITP)2@PDA.
2025 · Enhancing the Electrochemical Energy Storage of Metal-Organic Frameworks: Linker Engineering and Size Optimization
Primary Ni-MOF powder series · Powder · FESEM Zeiss-Supra55; TEM JEM-2100; HRTEM/element mapping on Tecnai G2 F30 S-TWIN
2025 · Enhancing the Electrochemical Energy Storage of Metal-Organic Frameworks: Linker Engineering and Size Optimization
Ni-tdc-bpy/bpe 0.25 and 0.75 size variants · Powder · SEM images for 0.75 and 0.25 variants; GCD curves for 0.25 variants at 0.5-5 A/g
2025 · Fabrication of a Novel Cu Based Conjugated Coordination Polymer for Effective Electroreduction of Nitrate to Ammonia and Zn–Nitrate Batteries
Cu3(HITP)2/CF pine-like electrode · Electrode · Cu3(HITP)2/CF characterised after NRA by SEM, XRD and Cu 2p XPS in SI Figures S18-S20.
2025 · Fabrication of a Novel Cu Based Conjugated Coordination Polymer for Effective Electroreduction of Nitrate to Ammonia and Zn–Nitrate Batteries
Cu3(HHTP)2/CF pine-like comparison electrode · Electrode · Morphology and elemental analysis of Cu3(HHTP)2/CF comparison sample.
2025 · Fabrication of a Novel Cu Based Conjugated Coordination Polymer for Effective Electroreduction of Nitrate to Ammonia and Zn–Nitrate Batteries
Cu3(HITP)2/CF pine-like electrode · Electrode · Morphology and elemental mapping of Cu3(HITP)2/CF nanorod arrays.
2025 · Fibrous Pb(II)-Based Coordination Polymer Operable as a Photocatalyst and Electrocatalyst for High-Rate, Selective CO2-to-Formate Conversion
MW_60 fibrous KGF-9 powder · Powder · SEM image of MW_60 fibrous KGF-9.
2025 · Fibrous Pb(II)-Based Coordination Polymer Operable as a Photocatalyst and Electrocatalyst for High-Rate, Selective CO2-to-Formate Conversion
ordinary KGF-9 powder · Powder · SEM image of ordinary KGF-9.
2025 · Flexible 8 V planar supercapacitors: Unleashing ionic liquid transport via Co/Ni/Mn-MOFs nanorod pore-channel modulation
Mn-MOF powder · Powder · Morphology of Co-MOF, Ni-MOF and Mn-MOF from main and SI figures; grouped under target sample with notes for all three powders.
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
Optimised Cu3(HHTP)2/Nylon hot-pressed film at 353 K · Thin Film · Surface morphology and elemental mapping of Cu3(HHTP)2/Nylon hot-pressed film.
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
Cu3(HHTP)2 nanorod powder · Powder · Morphology and elemental distribution of Cu3(HHTP)2 nanorod powder.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
0D spherical Cu-HHTP powder · Powder · EDS elemental analysis for Cu, C and O in 0D, 1D and 2D Cu-HHTP.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
1D rod-like Cu-HHTP powder · Powder · EDS elemental analysis for Cu, C and O in 0D, 1D and 2D Cu-HHTP.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
2D sheet-like Cu-HHTP powder · Powder · EDS elemental analysis for Cu, C and O in 0D, 1D and 2D Cu-HHTP.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
0D spherical Cu-HHTP powder · Powder · SEM carried out on Hitachi SU3500; Fig. 2 contains SEM images and size distributions for 0D, 1D and 2D Cu-HHTP.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
1D rod-like Cu-HHTP powder · Powder · SEM carried out on Hitachi SU3500; Fig. 2 contains SEM images and size distributions for 0D, 1D and 2D Cu-HHTP.
2025 · From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies
2D sheet-like Cu-HHTP powder · Powder · SEM carried out on Hitachi SU3500; Fig. 2 contains SEM images and size distributions for 0D, 1D and 2D Cu-HHTP.
2025 · From Rigid to Flexible: Ce-BTC-MOF-Enabled Self-Powered Photodetectors with Record-High Responsivity and Detectivity
Ce-BTC thin films on glass, thickness series · Thin Film · SEM image in SI Figure S1; TEM and EDS maps for Ce-BTC film in Figure 1b.
2025 · High-resolution structure of Zn3(HOTP)2 (HOTP = hexaoxidotriphenylene), a three-dimensional conductive MOF
Zn3(HOTP)2 crystallites imaged by SEM · Powder · Zeiss Merlin high-resolution SEM with InLens detector at 3 or 4 kV.
2025 · Highly Porous, Electrically Conductive Two-Dimensional Nickel–Hexaaminodehydrobenzoannulene Frameworks
Ni3(HI12)2 activated powder · Powder · activated samples; 15 kV under pressure below 1e-3 Pa
2025 · Highly Porous, Electrically Conductive Two-Dimensional Nickel–Hexaaminodehydrobenzoannulene Frameworks
Ni3(HI18)2 activated powder · Powder · activated samples; 15 kV under pressure below 1e-3 Pa
2025 · Highly Porous, Electrically Conductive Two-Dimensional Nickel–Hexaaminodehydrobenzoannulene Frameworks
Ni3(HITP)2 activated powder · Powder · activated samples; 15 kV under pressure below 1e-3 Pa
2025 · Highly sensitive and selective electrochemical sensor for carbendazim detection in fruit juice using novel bi-metallic metal organic framework anchored graphite rod electrode
Self-standing Ni-Fe(PDC)/GR electrode · Electrode · SEM on Zeiss Sigma-300 at 20 kV; TEM on JEOL JEM 2100 PLUS at 200 kV by drop casting onto carbon-coated copper grids.
2025 · Impact of the Channel Length in Nanoporous Electric Double-Layer Capacitors on the Charge Transport Explored by Metal-Organic Framework Films
Cu3(HHTP)2 SURMOF synthesis-cycle series · Thin Film · TESCAN VEGA3 SEM; samples coated with 3-4 nm platinum before imaging; four cross-sectional broken-sample views used for thickness averages.
2025 · In situ construction of a dual-metal 2D conjugated metal-organic framework on carbon paper for asymmetric supercapacitors
Co/Ni-HHTP@CP electrode · Electrode · SEM/EDS used to inspect c-MOF growth on activated carbon paper and compare Co/Ni-, Co/Cu-, and Cu/Ni-HHTP@CP.
2025 · In situ construction of a dual-metal 2D conjugated metal-organic framework on carbon paper for asymmetric supercapacitors
Co/Ni-HHTP powder · Powder · TEM/SEM/EDS used to inspect Co/Ni-HHTP morphology and elemental distribution; SI reports SEM/EDS for Co/Cu-HHTP and Cu/Ni-HHTP.
2025 · In Situ Construction of Amide-Functionalized 2D Conjugated Metal-Organic Frameworks with Multiple Active Sites for High-Performance Potassium-Ion Batteries
Cu-HBB-MOF cathode electrode in CR2025 potassium half-cell · Electrode · pristine, discharged and charged states; long-term cycled state
2025 · In Situ Construction of Amide-Functionalized 2D Conjugated Metal-Organic Frameworks with Multiple Active Sites for High-Performance Potassium-Ion Batteries
as-synthesised Cu-HBB-MOF black powder · Powder · FE-SEM at 5.0 kV; HRTEM on JEOL JEM-2100Plus at 200 kV
2025 · Interconnected Lamellar 3D Semiconductive PCP for Rechargeable Aqueous Zinc Battery Cathodes
Charged/discharged VO-HHTP cathodes for ex situ characterisation · Electrode · Cathodes at charged to 1.5 V, discharged to 0.75/0.2 V, recharged states; evaluates framework stability and ligand/vanadium redox.
2025 · Interconnected Lamellar 3D Semiconductive PCP for Rechargeable Aqueous Zinc Battery Cathodes
As-prepared VO-HHTP black powder · Powder · As-prepared powder morphology.
2025 · Ligand engineering of Co-MOF-74 with hexaaminotriphenylene for enhanced oxygen reduction reaction in zinc-air batteries
Co-MOF-74-HATP powder · Powder · SEM/TEM morphology and EDS elemental mapping of Co-MOF-74-HATP, with Co-MOF-74 supplementary controls.
2025 · Ligand-Insertion Strategy for Constructing 2D Conjugated Metal–Organic Framework with Large Pore Size for Electrochemical Analytics
As-prepared Cu3(HHTP)(DHBQ)1.5/1.53 black powder · Powder · SEM on JEOL JSM-7500F at 5 kV; HRTEM/SAED on JEOL JEM-2100F at 200 kV after ethanol dispersion was dried on microgrid copper mesh.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe · Electrode · Morphology of NiFe and NiFe-Mn electrodes examined by SEM.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe-Mn1 · Electrode · Morphology of NiFe and NiFe-Mn electrodes examined by SEM.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe-Mn2 · Electrode · Morphology of NiFe and NiFe-Mn electrodes examined by SEM.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe-Mn3 · Electrode · Morphology of NiFe and NiFe-Mn electrodes examined by SEM.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe-Mn3 without urea · Electrode · No-urea control SEM referenced in SI; image not available in provided text layer.
2025 · Manganese oxide and urea-assisted engineering of nickel-iron compounds for high-performance battery-supercapacitor hybrid devices
NiFe-Mn4 · Electrode · Morphology of NiFe and NiFe-Mn electrodes examined by SEM.
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR air bubbled 1 mL/min Ni3(HHTP)2 · Thin Film · air-flow series products
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR air bubbled 2 mL/min Ni3(HHTP)2 · Thin Film · air-flow series products
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR air bubbled 4 mL/min Ni3(HHTP)2 · Thin Film · air-flow series products
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR in situ air-bubbled Ni3(HHTP)2, room temperature · Thin Film · MOF collected from in situ growth experiment
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR air-diffusion port-out Ni3(HHTP)2, room temperature · Thin Film · MOF collected from in situ growth experiment
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR air plus 50 uL 6% H2O2 Ni3(HHTP)2, room temperature · Thin Film · MOF collected from in situ growth experiment
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR nitrogen-control Ni3(HHTP)2 attempt, room temperature · Thin Film · MOF collected from in situ growth experiment
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water air plus H2O2 Ni3(HHTP)2, 85 C · Powder · bulk synthesis products imaged by SEM
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
heterogeneous water bubbled-air Ni3(HHTP)2, 85 C · Powder · bulk synthesis products imaged by SEM
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water bubbled-air Ni3(HHTP)2, 85 C · Powder · bulk synthesis products imaged by SEM
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water N2 plus H2O2 Ni3(HHTP)2, 85 C · Powder · bulk synthesis products imaged by SEM
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water bubbled-N2 Ni3(HHTP)2, 85 C · Powder · bulk synthesis products imaged by SEM
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR gradual 10 eq H2O2 over 2 h Ni3(HHTP)2 · Thin Film · gradual-addition rods
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR gradual 10 eq H2O2 over 4 h Ni3(HHTP)2 · Thin Film · gradual-addition rods
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR 1 eq H2O2 Ni3(HHTP)2 · Thin Film · aggregates
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR 1 eq H2O2 Ni3(HHTP)2 · Thin Film · nanorods
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR 3 eq H2O2 Ni3(HHTP)2 · Thin Film · aggregates
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
ATR 3 eq H2O2 Ni3(HHTP)2 · Thin Film · nanorods
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water bubbled-air Ni3(HHTP)2, 22 C · Powder · bubbled-air synthesis at 22 C for 18 h
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water bubbled-air Ni3(HHTP)2, 40 C · Powder · bubbled-air synthesis at 40 C for 18 h
2025 · Mechanistic Insight into the Formation and Deposition of Conductive, Layered Metal-Organic Framework Nanocrystals
homogeneous DMF/water bubbled-air Ni3(HHTP)2, 85 C · Powder · bubbled-air synthesis at 85 C for 18 h
2025 · Metal-organic framework glass stabilizes high-voltage cathodes for efficient lithium-metal batteries
Glass@NCM-811, 2 wt% MOF Glass coating · Powder · As-prepared MOF powder, MOF Glass, bare NCM-811 and Glass@NCM-811 characterised by SEM/TEM/HR-TEM.
2025 · Metal-Organic Framework-Based Tribovoltaic Textile for Human Body Signal Monitoring
Cu-BHT cotton · Thin Film · Pure cotton, CuCl2-bonded cotton, and Cu-BHT cotton at different magnifications
2025 · Metal–Organic Frameworks Coordination-Oriented Polymer Dielectrics for Neuromorphic Vision Sensors
PM1 (PAA-MOF-1) dielectric film · Thin Film · Surface morphologies of PAA, PM1, and PM2 films in horizontal and tilted 45-degree states; AFM surface roughness.
2025 · Metal–Organic Frameworks Coordination-Oriented Polymer Dielectrics for Neuromorphic Vision Sensors
Zr-BTB nanosheets · Nanosheet · Morphology of Zr-BTB and dielectric layers recorded by high-resolution field-emission SEM and field-emission TEM.
2025 · Micro-sized conductive metal–organic framework nanosheets for the electrochemical hydrogen evolution reaction in acidic media
Ni-HITP nanosheets (Ni-HITP NSs) · Nanosheet · Time-series sonication morphology; nanosheet thickness annotated in Fig. 1i.
2025 · Micro-sized conductive metal–organic framework nanosheets for the electrochemical hydrogen evolution reaction in acidic media
Ni-HITP NS TMAH dilution series · Nanosheet · Ni-HITP NS synthesis in serially diluted TMAH solutions.
2025 · Mitigating lipid biofouling in wearable sweat sensors: A study on conductive MOF-based electrodes with tuned hydrophilicity
Cu-HHTP electrode · Electrode · SEM imaging of MOF electrode morphology
2025 · Mitigating lipid biofouling in wearable sweat sensors: A study on conductive MOF-based electrodes with tuned hydrophilicity
Cu-HHTP/OTS electrode · Electrode · SEM imaging of MOF electrode morphology
2025 · Mitigating lipid biofouling in wearable sweat sensors: A study on conductive MOF-based electrodes with tuned hydrophilicity
Cu-THQ electrode · Electrode · SEM imaging of MOF electrode morphology
2025 · Mitigating lipid biofouling in wearable sweat sensors: A study on conductive MOF-based electrodes with tuned hydrophilicity
Ni-HHTP electrode · Electrode · SEM imaging of MOF electrode morphology
2025 · Mitigating lipid biofouling in wearable sweat sensors: A study on conductive MOF-based electrodes with tuned hydrophilicity
ZIF-8 electrode · Electrode · SEM imaging of MOF electrode morphology
2025 · Mixed Ionic and Electronic Conductivity in a Tetrathiafulvalene-Phosphonate Metal-Organic Framework
TTFTP-La MOF bulk dark crystals · Powder · Morphology and elemental mapping of TTFTP-La MOF.
2025 · Modulating the redox states in a 3D conductive MOF for sweat ascorbic acid monitoring
I2@FeTHQ, 20 C 6 h · Powder · Morphology and elemental mapping before/after iodine doping
2025 · Multifunctional covalent organic framework with extended π-d conjugated structure for lithium-sulfur batteries
as-synthesised Ni-COF powder/precipitate · Powder · SEM/EDS in SI; HRTEM in main Fig. 2e-g
2025 · Multifunctional covalent organic framework with extended π-d conjugated structure for lithium-sulfur batteries
Ni-COF@PP composite separator · Thin Film · SEM images and cross-sections of PP and Ni-COF@PP separators
2025 · Multilevel Chiral Semiconductor Metal-Peptide Framework Thin Film for Highly Circularly Polarized Visible Photodetection
Highly oriented CAS-4 thin film grown for 20 LPE-LBL cycles · Thin Film · Surface/cross-sectional SEM and AFM for oriented CAS-4 films; supplementary SEM for 5, 10 and 15 cycles.
2025 · Nanoporous synthetic metal: A nickel MOF with an amino-functionalized macrocyclic ligand
Cu-HATC powders · Powder · SEM and HRTEM of Cu-HATC; lattice distance in inset
2025 · Nanoporous synthetic metal: A nickel MOF with an amino-functionalized macrocyclic ligand
Ni-HATC thin film on glass · Thin Film · Ni-HATC thin film imaged at multiple magnifications
2025 · Operando Raman and ex situ characterization of an iron-based conductive MOF as a negative electrode in Li-ion batteries
synthesised Fe-HHTP powder · Powder · FEG INSPECT 50 from FEI.
2025 · Overscreening-Driven Modulation of Ion Adsorption and Desorption in Conductive MOF Electrodes by Charging Rates
Ni3(HITP)2 c-MOF film on silicon wafer for SEM · Thin Film · Zeiss Gemini 300 SEM operated at 3 kV on VFT-transferred c-MOF film on silicon wafer.
2025 · Photoactivated conductive MOF thin film arrays on micro-LEDs for chemiresistive gas sensing
CuHHTP-5C · Thin Film · Thickness measured 10 times; source data list 10 points for CuHHTP-5C.
2025 · Promoting electromagnetic wave absorption for conductive metal-organic frameworks through crystal morphology controlling
Ni-TABQ-1 black crystalline powder · Powder · SEM imaging of as-synthesised Ni-TABQ-1 powder.
2025 · Promoting electromagnetic wave absorption for conductive metal-organic frameworks through crystal morphology controlling
Ni-TABQ-2 black powder · Powder · SEM imaging of as-synthesised Ni-TABQ-2 powder.
2025 · Proton Conductive Metal-Organic Framework Encapsulating Emissive Hexacyanidochromate(III) Ions for Ratiometric and Lifetime-Based Detection of Humidity and Temperature
air-stable 1a bulk polycrystalline powder · Powder · P-XRD patterns and SEM images before/after humidity and temperature optical measurements.
2025 · Proton-electron coupling and mixed conductivity in a hydrogen-bonded coordination polymer
Ni-BAND blue crystals · Single Crystal · SEM image of Ni-BAND crystals.
2025 · Radiation-Induced in Situ Construction of 2D Conductive Defect-Rich Metal-Organic Frameworks for High-Performance Supercapacitor
Cu-CAT-Rad · Powder · Morphology, 100-facet lattice fringes, diffraction and elemental ratios
2025 · Radiation-Induced in Situ Construction of 2D Conductive Defect-Rich Metal-Organic Frameworks for High-Performance Supercapacitor
Cu-CAT-Sol · Powder · Morphology, 100-facet lattice fringes, diffraction and elemental ratios
2025 · Rational Design of Conductive MOF-Based Diatomic Electrocatalysts for Selective Ammonia Synthesis
Cu99Ni1-DBCO · Powder · Samples dispersed in ethanol and dropped on Mo mesh with carbon microgrids for electron microscopy.
2025 · Selenium-Substitution Strategy for Enhanced Mobility, Tunable Bandgap, and Improved Electrochemical Energy Storage in Semiconducting Conjugated Coordination Polymers
Ag4TSHQ powder · Powder · SEM/EDS after dispersion in EtOH on conductive silicon with Pt coating; TEM at 120 kV on carbon-coated copper grid.
2025 · Selenium-Substitution Strategy for Enhanced Mobility, Tunable Bandgap, and Improved Electrochemical Energy Storage in Semiconducting Conjugated Coordination Polymers
Ag4TXHQ-1:1 powder · Powder · PXRD and SEM/EDS maps for all mixed-ligand ratios.
2025 · Self-amplifying bimetallic conductive metal-organic framework for sensitive label-free electrochemiluminescence detection of aflatoxin B1
ZnCoMOFs black precipitate/powder · Powder · SEM images of ZnCoMOFs morphology
2025 · Solvent-Directed Assembly of π-Stacked 3D Metal-Organic Frameworks with Tunable Conductivity Enhanced by C60 Encapsulation
NU-4003-C60 · Single Crystal · OsO4 coated samples; comparison of NU-4003 and NU-4003-C60 morphology
2025 · Stacking growth of ionically conductive MOF on biofabrics enables reliable NH3 sensor for hepatic encephalopathy diagnosis
Zn-TCPP layer-thickness variants on alginate fabric · Thin Film · LBL-LPE MOF films with 2, 4, 6, and 8 layers on 60 um alginate fibre substrate.
2025 · Stacking growth of ionically conductive MOF on biofabrics enables reliable NH3 sensor for hepatic encephalopathy diagnosis
Zn-TCPP-6 sensor on alginate fabric · Thin Film · Morphology and lattice imaging of Zn-HHTP and Zn-TCPP.
2025 · Structural Control of Photoconductivity in a Flexible Titanium-Organic Framework
as-made MUV-35 crystals · Single Crystal
2025 · Structural Control of Photoconductivity in a Flexible Titanium-Organic Framework
single-crystal MUV-35-c two-probe device · Electrode
2025 · Superhydrophilic hydrogel-enhanced conductive MOF-based wearable sweat sensors with anti-lipid biofouling capability
Ni-HAB MOF powder · Powder · SEM morphology of synthesised Ni-HAB MOF powder.
2025 · Tailoring of electrocatalytic oxygen evolution reaction performance of 2D conductive Co-catecholate metal-organic frameworks
Co-CAT-W after OER testing · Electrode · Post-OER characterisation of Co-CAT-W after OER testing; SI figures S1-S3 referenced.
2025 · Tailoring of electrocatalytic oxygen evolution reaction performance of 2D conductive Co-catecholate metal-organic frameworks
Co-CAT-W · Powder · Thermoscientific Apero S SEM/EDX; JEOL JEM-2100 Plus TEM/HRTEM.
2025 · Tailoring of electrocatalytic oxygen evolution reaction performance of 2D conductive Co-catecholate metal-organic frameworks
Co-CAT-WO · Powder · Thermoscientific Apero S SEM/EDX; JEOL JEM-2100 Plus TEM/HRTEM.
2025 · Tuning the dxy Orbital Energy Level in 2D Cobalt-Organic-Framework via in-Plane Conjugated Phthalocyanine for Self-Powered Sensing
2D MOF nanosheets · Nanosheet · SEM and AFM thickness/lateral size for 2D MOF and 2D MOF@Pc; TEM image for 2D MOF@Pc.
2025 · Tuning the dxy Orbital Energy Level in 2D Cobalt-Organic-Framework via in-Plane Conjugated Phthalocyanine for Self-Powered Sensing
2D MOF@Pc/DNH · Unknown · Pore-size distributions of DNH and 2D MOF@Pc/DNH hydrogels from SI Figure S9.
2025 · Tuning the Electrical Conductivity of Bimetallic Co–Mn-Based MOFs via Precisely Regulating the Atomic Content of Metal Centers and Study on Their Dye Adsorption Properties
As-synthesised MOF2 · Powder · MOF2 used as representative case for Mn, Co and O spatial distribution.
2025 · Tuning the Electrical Conductivity of Bimetallic Co–Mn-Based MOFs via Precisely Regulating the Atomic Content of Metal Centers and Study on Their Dye Adsorption Properties
As-synthesised MOF1-MOF9 bulk series · Powder · JEOL JSM-6390LV; SEM analysis of MOF crystallite quality, with additional images in SI Figure S3.
2025 · Tuning the Structure-Property Relationships of Metallophthalocyanine-Based Two-Dimensional Conductive Metal-Organic Frameworks with Different Metal Linkages
CuPc-O-Cu black powder · Powder · SEM at 10 kV and HR-TEM after acetone suspension/drop-cast onto lacey carbon copper mesh; FFT used for lattice orientation.
2025 · Tuning the Structure-Property Relationships of Metallophthalocyanine-Based Two-Dimensional Conductive Metal-Organic Frameworks with Different Metal Linkages
CuPc-O-Ni black powder · Powder · SEM at 10 kV and HR-TEM after acetone suspension/drop-cast onto lacey carbon copper mesh; FFT used for lattice orientation.
2025 · Tuning the Structure-Property Relationships of Metallophthalocyanine-Based Two-Dimensional Conductive Metal-Organic Frameworks with Different Metal Linkages
CuPc-O-Zn black powder · Powder · SEM at 10 kV and HR-TEM after acetone suspension/drop-cast onto lacey carbon copper mesh; FFT used for lattice orientation.
2025 · Two dimensional Conjugated Metal–Organic Frameworks with Multiple Redox-Active Sites towards High-Performance Sodium-Ion Battery
Cu-TBPQ black powder · Powder · SEM images for Cu-TBPQ and Cu-DDQP controls.
2025 · Two dimensional Conjugated Metal–Organic Frameworks with Multiple Redox-Active Sites towards High-Performance Sodium-Ion Battery
Cu-TTPQ black powder · Powder · SEM/TEM and HRTEM lattice imaging; TEM samples dispersed in ethanol and measured at 200 kV.
2025 · Two-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Triple Active Centers as High-Performance Cathodes for Flexible Zinc Batteries
Pristine 1D Cu-TABQ powder · Powder · SEM morphology of 1D Cu-TABQ powder control.
2025 · Two-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Triple Active Centers as High-Performance Cathodes for Flexible Zinc Batteries
Pristine 2D Cu-TABQ powder · Powder · SEM/TEM morphology and elemental distribution of pristine and cycled 2D Cu-TABQ powders.
2025 · Ultrathin 2D metal-organic framework nanosheet arrays to boost the overall efficiency of water splitting
TIT-1@NS/NF · Electrode · Post-test surface morphology, binding energies and phase integrity checks.
2025 · Ultrathin 2D metal-organic framework nanosheet arrays to boost the overall efficiency of water splitting
TIT-1@NS · Nanosheet · SEM and AFM imaging of TIT-1@NS nanosheet morphology and thickness.
2025 · Ultrathin 2D metal-organic framework nanosheet arrays to boost the overall efficiency of water splitting
TIT-1 · Powder · SEM imaging of TIT-1 morphology.
2025 · Unraveling the Electrical, Dielectric, and Electrocatalytic Properties of Bimetallic Cobalt-Based Metal–Organic Frameworks
1:2 Mn:Co cold-pressed pellet · Pellet · Ground pellets examined by FE-SEM; bimetallic elemental mapping for Mn, Co, C, O.
2025 · Volatolomics in Fritillarias and Their Identification by Orientation Controlled cMOF Thin Film Chemiresistors
Cu-HHTP[001]-20C thin film · Thin Film · SEM and tapping-mode AFM characterisation of the selected Cu-HHTP[001]-20C film.
2025 · Volatolomics in Fritillarias and Their Identification by Orientation Controlled cMOF Thin Film Chemiresistors
Cu-HHTP[100]-20C thin film · Thin Film · SEM and tapping-mode AFM characterisation of the selected Cu-HHTP[100]-20C film.
2024 · 2D Conductive Metal-Organic Frameworks Based on Tetraoxa[8]circulenes as Promising Cathode for Aqueous Zinc Ion Batteries
Cu-TOC black powder / pressed pellet · Powder · HRTEM lattice fringes and SEM/EDS morphology/compositional mapping for all M-TOCs.
2024 · A highly sensitive AgNPs/Ni3(HHTP)2 SERS substrate for the detection of food additives and pesticide residues
rod-shaped Ni3(HHTP)2 film · Thin Film · EDX elemental map of Ni, O, and C in Ni3(HHTP)2.
2024 · A highly sensitive AgNPs/Ni3(HHTP)2 SERS substrate for the detection of food additives and pesticide residues
PVP-modified monolayer AgNP film · Thin Film · SEM morphology and statistical analysis of 100 randomly selected Ag nanoparticles.
2024 · A highly sensitive AgNPs/Ni3(HHTP)2 SERS substrate for the detection of food additives and pesticide residues
AgNPs/Ni3(HHTP)2 SERS substrate on silicon wafer · Thin Film · SEM imaging of monolayer AgNP film and AgNPs/Ni3(HHTP)2 at different magnifications.
2024 · A highly sensitive AgNPs/Ni3(HHTP)2 SERS substrate for the detection of food additives and pesticide residues
rod-shaped Ni3(HHTP)2 film · Thin Film · ZEISS Sigma 300 SEM; top-down and side-view imaging.
2024 · A novel pencil graphite electrode modified with an iron-based conductive metal-organic framework exhibited good ability in simultaneous sensing bisphenol A and bisphenol S
Fe-HHTP powder · Powder · FESEM spot 3.0, magnification 50000x, high voltage 10.0 keV; TEM/HRTEM used for microstructure and elemental mapping.
2024 · A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib
green Ni/Mn-MOF powder · Powder · Elemental mapping for C, O, Mn and Ni plus EDX spectrum; sample gold sprayed for FESEM.
2024 · A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib
Mn-MOF powder · Powder · FESEM morphology of Mn-MOF at multiple magnifications.
2024 · A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib
green Ni/Mn-MOF powder · Powder · FESEM morphology of Ni/Mn-MOF at various magnifications; sample gold sprayed for 3 min before FESEM.
2024 · A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib
Ni-MOF powder · Powder · FESEM morphology of Ni-MOF microspheres.
2024 · A Triptycene-Based Layered/Flower-Like 2D Conductive Metal–Organic Framework with 3D Extension as an Electrode for Efficient Li Storage
Pristine M-DBH powders (M = Ni, Co, Mn) · Powder · Morphology, lattice fringes, selected-area electron diffraction, and elemental distribution for Ni/Co/Mn DBH powders.
2024 · Acid-Dependent Charge Transport in a Solution-Processed 2D Conductive Metal-Organic Framework
Cu3(HHTATP)2 stacked nanoflake powder · Powder · SEM at 5 kV without Pt coating; TEM at 200 kV after methanol dispersion and drop-casting on Cu grids.
2024 · Aggregation-induced enhancement of pyrene-based metal-organic framework as a new electrochemiluminescence emitter for ultrasensitive detection of sulfadimethoxine
Ce-MOF powder · Powder · SEM images and elemental maps of Ce-MOF.
2024 · Aggregation-induced enhancement of pyrene-based metal-organic framework as a new electrochemiluminescence emitter for ultrasensitive detection of sulfadimethoxine
ZPM yellow precipitate powder · Powder · SEM images and elemental maps of ZPM.
2024 · Aliovalent Substitution Tunes Physical Properties in a Conductive Bis(dithiolene) Two-Dimensional Metal-Organic Framework
Ni3(THT)2 black powder · Powder · SEM on Carl Zeiss Merlin at 5.00 kV; TEM on FEI Tecnai F30 after dispersing powder in MeCN and sonicating about 5 min
2024 · An Enzyme-Encapsulated Metal-Organic Frameworks Nanomesh Biosensor for Salivary Glucose Detection
CNT/GOx@ZIF-8 nanomesh · Powder · SEM images obtained at 10 kV; TEM images obtained at 200 kV.
2024 · Aptasensor based on gold nanostructure-decorated 2D Cu metal–organic framework nanosheets for highly sensitive and specific electrochemical lipopolysaccharide detection
Au/Cu-THQ/GCE · Electrode · SEM of Au/Cu-THQ/GCE and Au/Cu-TCPP/GCE at 3.0 kV after electrode surface modification; EDS mapping in SI.
2024 · Aptasensor based on gold nanostructure-decorated 2D Cu metal–organic framework nanosheets for highly sensitive and specific electrochemical lipopolysaccharide detection
Cu-THQ/GCE · Electrode · SEM images of bare GCE, Cu-TCPP/GCE and Cu-THQ/GCE used to compare MOF-only electrode morphology before Au deposition.
2024 · Bimetallic synergy significantly enhances the photocatalytic performance of lanthanide porphyrin-based MOFs: Efficient photocatalytic oxidation of benzyl alcohol and benzylamine under mild conditions in air
Ni-Nd PMOFs · Powder · Five photocatalytic cycles for benzyl alcohol and benzylamine; post-cycle XRD, FESEM, and XPS in SI.
2024 · Bimetallic synergy significantly enhances the photocatalytic performance of lanthanide porphyrin-based MOFs: Efficient photocatalytic oxidation of benzyl alcohol and benzylamine under mild conditions in air
Co-Nd PMOFs · Powder · SEM SU8020; TEM JEM1400FLASH at 200 kV per SI characterisation procedure.
2024 · Bimetallic synergy significantly enhances the photocatalytic performance of lanthanide porphyrin-based MOFs: Efficient photocatalytic oxidation of benzyl alcohol and benzylamine under mild conditions in air
Nd PMOFs · Powder · SEM SU8020; TEM JEM1400FLASH at 200 kV per SI characterisation procedure.
2024 · Bimetallic synergy significantly enhances the photocatalytic performance of lanthanide porphyrin-based MOFs: Efficient photocatalytic oxidation of benzyl alcohol and benzylamine under mild conditions in air
Ni-Nd PMOFs · Powder · SEM SU8020; TEM JEM1400FLASH at 200 kV per SI characterisation procedure.
2024 · Chromone-Based Cd(II) Fluorescent Coordination Polymer Fabricated to Study Optoelectronic and Explosive Sensing Properties
CSD1 thin-film Schottky device from CP1 · Thin Film · AFM images of device thin films; FESEM before and after sensing.
2024 · Conductive Metal-Organic Framework with Superior Redox Activity as a Stable High-Capacity Anode for High-Temperature K-Ion Batteries
bulk HAN-Cu-MOF powder · Powder · HRTEM lattice fringes and hexagonal pores; SEM/TEM morphology; elemental C/N/O/Cu mapping
2024 · Conductive Metal-Organic Framework with Superior Redox Activity as a Stable High-Capacity Anode for High-Temperature K-Ion Batteries
HAN-Cu-MOF KIB anode film · Electrode · Potassiation at 60 degC; electrolyte immersion in 5 M KFSI EC/EMC; solvent/acid/base exposure; post-cycling EIS after 1500 cycles
2024 · Conductive Metal−Organic Frameworks for Rechargeable LiOH-Based Li−O2 Batteries
NiCo-HHTP/KB/PTFE gas cathode · Electrode · NiCo-HHTP catalyst after 10 discharge/charge cycles.
2024 · Conductive Metal−Organic Frameworks for Rechargeable LiOH-Based Li−O2 Batteries
comparative M-HHTP and KB cathode set · Electrode · Cathodes after discharge/recharge in humid environment, RH about 65%.
2024 · Conductive Metal−Organic Frameworks for Rechargeable LiOH-Based Li−O2 Batteries
comparative M-HHTP powder set · Powder · As-synthesised NiCo-HHTP, Co-HHTP and Ni-HHTP catalyst powders.
2024 · Conductive Ni3(HITP)2 nanofilm with asymmetrical morphology prepared by gas–liquid interface self-assembly for glucose sensing
Ni3(HITP)2 film-3 min · Thin Film · EDS mapping for C, N, and Ni element distribution on film surface.
2024 · Conductive Ni3(HITP)2 nanofilm with asymmetrical morphology prepared by gas–liquid interface self-assembly for glucose sensing
DS-Ni-HITP-3 min · Thin Film · SEM at 15 kV; AFM in tapping mode for down-side surface of 3 min film.
2024 · Conductive Ni3(HITP)2 nanofilm with asymmetrical morphology prepared by gas–liquid interface self-assembly for glucose sensing
US-Ni-HITP-3 min · Thin Film · SEM at 15 kV; AFM in tapping mode for up-side surface of 3 min film.
2024 · Control of the Hydroquinone/Benzoquinone Redox State in High-Mobility Semiconducting Conjugated Coordination Polymers
as-synthesised Ag4TTHQ dark red/dark brown powder · Powder · SEM on Toshiba S4800; HRTEM on JEOL 2100F at 120 kV; compared Ag4TTHQ and Ag4TTBQ.
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
as-synthesised Ni-HAB film · Thin Film · Film morphology, cracks, powder contaminants, and AFM roughness before/after annealing and for NaOAc vs NH4OH base.
2024 · Copper-doped strontium metal-organic framework: Dual-function active material for supercapacitor and oxygen evolution reaction
Cu-doped Sr MOF powder · Powder · FE-SEM morphology and EDS maps for Sr, C, O and Cu in Cu-doped Sr MOF.
2024 · Copper-doped strontium metal-organic framework: Dual-function active material for supercapacitor and oxygen evolution reaction
Undoped Sr MOF powder · Powder · JEOL JSM-7800F FE-SEM operated at 30.0 kV; undoped Sr MOF morphology compared with Cu-doped Sr MOF.
2024 · Detection of Ascorbic Acid by Two-Dimensional Conductive Metal-Organic Framework-Based Electrochemical Sensors
as-synthesised Cu3(HHTP)2 powder · Powder · SEM image of obtained Cu3(HHTP)2.
2024 · Diffusional Electron Transport Coupled to Thermodynamically Driven Electron Transfers in Redox-Conductive Multivariate Metal-Organic Frameworks
Zn(NDI) thin film on FTO · Thin Film · Top surfaces and cross sections of FTO-grown films.
2024 · Diffusional Electron Transport Coupled to Thermodynamically Driven Electron Transfers in Redox-Conductive Multivariate Metal-Organic Frameworks
Zn(NDI)0.2(PMDI)0.8 thin film on FTO · Thin Film · Top surfaces and cross sections of FTO-grown films.
2024 · Diffusional Electron Transport Coupled to Thermodynamically Driven Electron Transfers in Redox-Conductive Multivariate Metal-Organic Frameworks
Zn(NDI)0.5(PMDI)0.5 thin film on FTO · Thin Film · Top surfaces and cross sections of FTO-grown films.
2024 · Diffusional Electron Transport Coupled to Thermodynamically Driven Electron Transfers in Redox-Conductive Multivariate Metal-Organic Frameworks
Zn(NDI)0.8(PMDI)0.2 thin film on FTO · Thin Film · Top surfaces and cross sections of FTO-grown films.
2024 · Diffusional Electron Transport Coupled to Thermodynamically Driven Electron Transfers in Redox-Conductive Multivariate Metal-Organic Frameworks
Zn(PMDI) thin film on FTO · Thin Film · Top surfaces and cross sections of FTO-grown films.
2024 · Direct Electrodeposition of Electrically Conducting Ni3(HITP)2 MOF Nanostructures for Micro-Supercapacitor Integration
Pt@Ni3(HITP)2 core-shell nanowire network · Electrode · SEM of nanowire network and TEM image showing Pt core/Ni3(HITP)2 shell; SI Figure S9 compares 20 mC and 650 mC shell-growth charges.
2024 · Direct Electrodeposition of Electrically Conducting Ni3(HITP)2 MOF Nanostructures for Micro-Supercapacitor Integration
Interconnected Ni3(HITP)2 nanotube network · Electrode · Wide-view and high-resolution SEM plus TEM highlighting hollow Ni3(HITP)2 nanotube morphology.
2024 · Direct Electrodeposition of Electrically Conducting Ni3(HITP)2 MOF Nanostructures for Micro-Supercapacitor Integration
Ni3(HITP)2 films on Pt, stainless steel, VN/Si/Si3N4, and carbon cloth · Thin Film · Optimised pulsed MeOH-DMSO deposition on Pt sheet, stainless steel, VN/Si/Si3N4, and carbon cloth.
2024 · Efficient oxygen evolution using conductive cobalt-based metal-organic framework
as-synthesised Co-BTB MOF powder · Powder · FESEM LYRA 3 Dual Beam, Tescan, operated at 30 kV; samples prepared from suspension in ethanol.
2024 · Electrochemical Capacitance Traces with Interlayer Spacing in Two-dimensional Conductive Metal–Organic Frameworks
H-/Et-/Bu-/Pent-MOF powder series · Powder · SEM images of as-synthesised H-, Et-, Bu-, and Pent-MOF powders.
2024 · Electrodeposition of Ni/Cu Bimetallic Conductive Metal–Organic Frameworks Electrocatalysts with Boosted Oxygen Reduction Activity for Zinc–Air Batteries
Ni3(HITP)2 film on carbon cloth · Electrode · Supporting SEM/TEM images for Ni3(HITP)2 and Cu3(HITP)2 films.
2024 · Electrodeposition of Ni/Cu Bimetallic Conductive Metal–Organic Frameworks Electrocatalysts with Boosted Oxygen Reduction Activity for Zinc–Air Batteries
Cu3(HITP)2 film on carbon cloth · Electrode · Supporting SEM/TEM images for Ni3(HITP)2 and Cu3(HITP)2 films.
2024 · Electrodeposition of Ni/Cu Bimetallic Conductive Metal–Organic Frameworks Electrocatalysts with Boosted Oxygen Reduction Activity for Zinc–Air Batteries
Ni2.1Cu0.9(HITP)2 film on carbon cloth · Electrode · Morphology and lattice characterisation of electrodeposited Ni2.1Cu0.9(HITP)2 film.
2024 · Electrosynthesis of a Nickel-Based Conductive Metal-Organic Framework with Controlled Morphology for Enhanced Capacitance
Ni-HHTP comparative sample set · Unknown · Time-dependent SEM for electrosynthesis, SEM/TEM images of flower, disc and bulk morphologies.
2024 · Embedding Pt in Ni-MOF/CdS organic-inorganic hybrid materials as electron channel to promote photogenerated carrier separation for enhanced photocatalytic hydrogen evolution under visible light
CdS · Powder · Micromorphology of CdS.
2024 · Embedding Pt in Ni-MOF/CdS organic-inorganic hybrid materials as electron channel to promote photogenerated carrier separation for enhanced photocatalytic hydrogen evolution under visible light
Ni-MOF · Powder · Micromorphology of standalone Ni-MOF.
2024 · Embedding Pt in Ni-MOF/CdS organic-inorganic hybrid materials as electron channel to promote photogenerated carrier separation for enhanced photocatalytic hydrogen evolution under visible light
0.3 NPC · Powder · Micromorphology, lattice spacing and elemental mapping of 0.3 NPC.
2024 · Enhancement of the performance of Ge–air batteries under high temperatures using conductive MOF-modified Ge anodes
Ge@Ni3(HITP)2 anode · Electrode · Anodes examined after 24 h and 48 h discharge at 16 deg C; oxygen content reported after 48 h at 65 uA cm^-2.
2024 · Enhancement of the performance of Ge–air batteries under high temperatures using conductive MOF-modified Ge anodes
Ge@Ni3(HITP)2 anode · Electrode · Anodes examined after 24 h and 48 h discharge at 50 deg C; EDS Table S2 reports oxygen and Ge contents after 48 h at 65.0 uA cm^-2.
2024 · Enhancement of the performance of Ge–air batteries under high temperatures using conductive MOF-modified Ge anodes
Ge@Ni3(HITP)2 anode · Electrode · Film adhesion, film thickness, boundary height, and surface roughness on Ge substrate.
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
A-PVDF-N@Nafion · Thin Film · surface and cross-sectional SEM of final NFPEM
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
A-PVDF@Nafion · Thin Film · surface and cross-sectional SEM of final NFPEM
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
ammoniated PVDF NFM · Thin Film · fiber surface morphology; scale bars 1 um and 500 nm
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
A-PVDF-NS@Nafion · Thin Film · surface and cross-sectional SEM of final NFPEM
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
PVDF@Nafion · Thin Film · surface and cross-sectional SEM of final NFPEM
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
PVDF NFM · Thin Film · fiber surface morphology; scale bars 1 um and 500 nm
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
PVDF/UiO-66-NH2 NFM · Thin Film · fiber surface morphology; scale bars 1 um and 500 nm
2024 · Enhancing Proton Conductivity and Dimensional Stability of Nanofiber Proton Exchange Membranes through In Situ Growth of MOF-Modified PVDF Nanofibers
PVDF/UiO-66-NH2-SO3H NFM · Thin Film · fiber surface morphology; scale bars 1 um and 500 nm
2024 · Fabrication of high-performance supercapacitor of surface-engineered ZIF-8 for energy storage applications
1-Ag@ZIF-8 · Powder · Morphology of 1-Ag@ZIF-8 at different magnifications.
2024 · Fabrication of high-performance supercapacitor of surface-engineered ZIF-8 for energy storage applications
2-Ag@ZIF-8 · Powder · Morphology and Ag nanoparticle deposition for 2-Ag@ZIF-8.
2024 · Fabrication of high-performance supercapacitor of surface-engineered ZIF-8 for energy storage applications
ZIF-8 · Powder · Morphology of pristine ZIF-8 at different magnifications.
2024 · From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks
TCNQ@Cu-MOF-74 pellet · Pellet · JEOL JSM-7600F thermal field emission SEM; samples sputter-coated with gold; 10 kV acceleration voltage, 2000x magnification, 8.0 mm working distance.
2024 · Glucose sensing performance of bimetallic MOFs CoFe-ZIF/CC for enzyme-free saliva sensor applications
Co0.95Fe0.05-ZIF/CC composite · Nanosheet · SEM on FEI Verios XHR; STEM/TEM and EDS on JEOL 2100.
2024 · High-Performance H2S Sensors to Detect SF6 Leakage
Co1.8Ni1.2(HITP)2 chemiresistive gas sensor on Au IDE chip · Electrode · 4-inch silicon wafer, Cr/Au sputtering, LC100A lithography, ion beam etching and dicing into chips.
2024 · High-Performance H2S Sensors to Detect SF6 Leakage
Co1.8Ni1.2(HITP)2 powder · Powder · Co1.8Ni1.2(HITP)2 morphology, lattice spacing and elemental maps.
2024 · High-Performance H2S Sensors to Detect SF6 Leakage
Co3(HITP)2 powder · Powder · Co3(HITP)2 morphology and elemental maps.
2024 · High-Performance H2S Sensors to Detect SF6 Leakage
Ni3(HITP)2 powder · Powder · Ni3(HITP)2 morphology, lattice spacing and elemental maps.
2024 · High-performance hybrid supercapacitors enabled by CoTe@CoFeTe double-shelled nanocubes
ZIF67 nanocubes · Powder · Morphology evolution of ZIF67, ZIF67@CoFe-PBA, Co3O4@CoFe2O4, and CoTe@CoFeTe.
2024 · High-Performance Ni3(HHTP)2 Film-Based Flexible Field-Effect Transistor Gas Sensors
Ni3(HHTP)2 film FET sensor on PI · Thin Film · Ni3(HHTP)2 film deposited on PI substrate; cross-section used for film thickness and top view for morphology.
2024 · High-Performance Ni3(HHTP)2 Film-Based Flexible Field-Effect Transistor Gas Sensors
Ni3(HHTP)2 film FET sensor on PI · Thin Film · Ni3(HHTP)2 films on PI, tape (PET), paper cup, take-out bag, facemask and tablecloth.
2024 · Humidity-Mediated Dual Ionic-Electronic Conductivity Enables High Sensitivity in MOF Chemiresistors
M3HHTP2 and M3HITP2 control sensors · Electrode · PXRD spectra and SEM images for M3HHTP2 and M3HITP2 (M = Co, Ni, Cu).
2024 · Humidity-Mediated Dual Ionic-Electronic Conductivity Enables High Sensitivity in MOF Chemiresistors
Cu3HHTT2 powder · Powder · Zeiss Gemini 450 high-resolution SEM with InLens or SE2 signal at 3.00 kV.
2024 · In Situ Growth of Conductive Metal-Organic Framework onto Cu2O for Highly Selective and Humidity-Independent Hydrogen Sulfide Detection in Food Quality Assessment
Cu2O@CuHHTP-3 interdigital electrode sensor · Electrode · Cu2O@CuHHTP exposed to 50 ppm H2S for 100 s at room temperature; powder scraped for immediate XPS testing.
2024 · In Situ Growth of Conductive Metal-Organic Framework onto Cu2O for Highly Selective and Humidity-Independent Hydrogen Sulfide Detection in Food Quality Assessment
Cu2O@CuHHTP-3 powder · Powder · Cu2O and Cu2O@CuHHTP-n morphology and shell thickness comparison.
2024 · In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance
50%-NiCAT@TOW membrane · Thin Film · FE-SEM at 2 kV for EC-MOF@TOW and EC-MOF powder; SEM images of surface and cross-section.
2024 · Laccase-inspired bi-amino acid MOFs with high substrate affinity: Catalytic deposition induced “signal-down” electrochemical response towards PD-L1
Cu-F/Hs powder/nanoparticles · Powder · Morphology and elemental distribution of Cu-F/Hs nanoparticles.
2024 · Large-Area Metal–Organic Framework Glasses for Efficient X-Ray Detection
ZnPIm MOF glass film · Thin Film · Zeiss Merlin SEM; EDX/EDS elemental mapping for Zn, P, N and O.
2024 · Layered coordination polymer with two-dimensional covalent bismuth-organic networks: Semiconductor and lithium ion storage
as-made Bi-DSBDC-DMA yellow crystalline solid · Powder · Zeiss Merlin and TESCAM MIRA3 SEM instruments.
2024 · Macrocyclic ligand-driven ion selectivity and high surface area in a 2D conductive MOF
Cu-EP-Cs-2 · Powder · EDS determined Cs occupancy for Cu-EP-Cs-0.5, Cu-EP-Cs-1 and Cu-EP-Cs-2
2024 · Macrocyclic ligand-driven ion selectivity and high surface area in a 2D conductive MOF
pristine Cu-EP powder · Powder · SEM at 5 kV; TEM at 300 kV; TEM along [001] direction
2024 · Manipulating Photoconduction in Cu-Pyrene 1-D Coordination Nanosheets by Modulating Interlayer π-π Stacking
Cu-PTT nanosheet powder · Nanosheet · SEM imaging of coordination polymer morphology.
2024 · Manipulating Photoconduction in Cu-Pyrene 1-D Coordination Nanosheets by Modulating Interlayer π-π Stacking
Cu-tBuPTT nanosheet powder · Nanosheet · SEM imaging of coordination polymer morphology.
2024 · Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorption
Zn3Cu1-HHTP powder/rod crystals · Powder · SEM SU-70; HRTEM JEM 2100F; HAADF-STEM Thermo Scientific Spectra 300 at 200 kV.
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Try MOF powder (E) · Powder · SEM micrographs and EDS elemental/compositional analysis
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Co-Try MOF powder (P1) · Powder · SEM micrographs and EDS elemental/compositional analysis
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Zn-Try MOF powder (P2) · Powder · SEM micrographs and EDS elemental/compositional analysis
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Er-Try MOF powder (P3) · Powder · SEM micrographs and EDS elemental/compositional analysis
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Yb-Try MOF powder (P4) · Powder · SEM micrographs and EDS elemental/compositional analysis
2024 · MOF-enabled high-density 2D molecular crystal optoelectronic memory transistor with floating gate architecture
Pristine 2D Cu3(HHTP)2 MOF thin film · Thin Film · Morphology and thickness/roughness characterisation of transferred Cu3(HHTP)2 MOF films.
2024 · Molecular-Level Pore Tuning in 2D Conductive Metal-Organic Frameworks for Advanced Supercapacitor Performance
Cu3(HHTATP)2 dark powder · Powder · SEM at 5 kV; TEM at 200 kV after methanol dispersion/drop-casting onto Cu TEM grids.
2024 · Morphology Control of Mixed Metallic Organic Framework for High-Performance Hybrid Supercapacitors
Benzoic Acid-80 · Electrode · Benzoic Acid-60/80/100 samples; FESEM and TEM used to determine nanoneedle/nanorod morphology and thickness.
2024 · Morphology Control of Mixed Metallic Organic Framework for High-Performance Hybrid Supercapacitors
H2BDC-80 · Electrode · H2BDC-60/80/100 samples imaged at different magnifications.
2024 · Morphology Control of Mixed Metallic Organic Framework for High-Performance Hybrid Supercapacitors
H3BTC-100 · Electrode · H3BTC-60/80/100 samples imaged at different magnifications.
2024 · Morphology-driven electrochemical attributes of Cu-MOF: a high-performance anodic material for battery supercapacitor hybrids
Q1 hydrothermal Cu-MOF powder · Powder · SEM images at parallel resolutions for Q1 and Q2.
2024 · Morphology-driven electrochemical attributes of Cu-MOF: a high-performance anodic material for battery supercapacitor hybrids
Q2 sonochemical Cu-MOF powder · Powder · SEM images at parallel resolutions for Q1 and Q2.
2024 · Multimetallic Prussian Blue Analogue Nanoparticles for Oxygen Evolution Reaction and Efficient Benzyl Alcohol Oxidation
MnFeCoNiCu-PBA nanoparticles · Powder · Fresh MnFeCoNiCu-PBA nanoparticles
2024 · Multimetallic Prussian Blue Analogue Nanoparticles for Oxygen Evolution Reaction and Efficient Benzyl Alcohol Oxidation
MnFeCoNiCu-PBA-derived M(O)OH after BA oxidation · Nanosheet · MnFeCoNiCu-PBA after BA oxidation/reconstruction
2024 · NiCo-MOFs in situ anchored on graphdiyne with metal-like properties form a strongly coupled electron transport interface and construct an ohmic contact to achieve efficient charge-hole spatial separation
NCCG-15 · Powder · morphology and elemental distribution of NCCG-15
2024 · Novel 2D CuFe-MOF-based immunoprobe: Addressing antifouling electrochemical immunosensing inadequate sensitivity challenge
2D CuFe-MOF · Nanosheet · Cu-BDC nanosheets, Cu2O nanocubes and CuFe-MOF imaged.
2024 · Novel electrochemical sensing strategy for ultrasensitive detection of tetracycline based on porphyrin/metal phthalocyanine-covalent organic framework
CuTAPc-TFPP-COF powder · Powder · SEM and TEM images of pristine CuTAPc-TFPP-COF; HR-TEM at 200 kV per SI methods.
2024 · Ordered layered manganese-based metal–organic frameworks induce 2D growth of discharge products via LiO2 adsorbent for high performance lithium–oxygen batteries
Mn-MOF temperature-series powders · Powder · Hitachi S4800 FE-SEM; morphology of Mn-MOF catalysts synthesised at 120-200 C
2024 · Organic Solvent Boosts Charge Storage and Charging Dynamics of Conductive MOF Supercapacitors
near-ideal Ni3(HITP)2 crystallite powder · Powder · SEM on ZEISS GeminiSEM 300 at 3 kV; HR-TEM on FEI Tecnai G2 20 at 200 kV; TEM samples drop-cast on Cu grids from methanol dispersion.
2024 · Performance Improvement of Photodetectors Based on ZIF-8 Nanostructures on Porous Silicon Substrate
ZIF-8/PS thin film · Thin Film · 30 kV; top-view and cross-sectional FESEM for PS and ZIF-8/PS.
2024 · Photocatalytic Hydrogen Peroxide Production through Functionalized Semiconductive Metal-Organic Frameworks
EFB-MOF powder · Powder · TEM at 300 kV and SEM at 5 kV; EFB-MOF morphology and lattice distances.
2024 · Plasma-catalytic removal of toluene over bimetallic M/Mn-BTC catalysts in dielectric barrier discharge reactor
Ce/Mn-BTC · Powder · Morphology and elemental distribution by Gemini 300 SEM and EDS
2024 · Plasma-catalytic removal of toluene over bimetallic M/Mn-BTC catalysts in dielectric barrier discharge reactor
Co/Mn-BTC / Co/Mn-BTC-1 · Powder · Morphology and elemental distribution by Gemini 300 SEM and EDS
2024 · Plasma-catalytic removal of toluene over bimetallic M/Mn-BTC catalysts in dielectric barrier discharge reactor
Cu/Mn-BTC · Powder · Morphology and elemental distribution by Gemini 300 SEM and EDS
2024 · Plasma-catalytic removal of toluene over bimetallic M/Mn-BTC catalysts in dielectric barrier discharge reactor
Fe/Mn-BTC · Powder · Morphology and elemental distribution by Gemini 300 SEM and EDS
2024 · Rational design of sulfur vacancy-rich NiCo2S4/C nanostructure for high-performance hybrid supercapacitors
NCO · Powder · SEM micrographs and length distribution histograms for NCO.
2024 · Rational design of sulfur vacancy-rich NiCo2S4/C nanostructure for high-performance hybrid supercapacitors
NCS · Powder · SEM micrographs and length distribution histograms for NCS.
2024 · Rational design of sulfur vacancy-rich NiCo2S4/C nanostructure for high-performance hybrid supercapacitors
NCSC · Powder · SEM micrographs and length distribution histograms for NCSC.
2024 · Rational design of sulfur vacancy-rich NiCo2S4/C nanostructure for high-performance hybrid supercapacitors
Ni1Co1-BTC · Powder · SEM micrographs and length distribution histograms for Ni1Co1-BTC.
2024 · Reaction-Type-Dependent Behavior of Redox-Hopping in MOFs─Does Charge Transport Have a Preferred Direction?
Ru-NU-1000 film on FTO · Electrode · SEM of Ru-NU-1000 film prepared by EPD on FTO.
2024 · Reaction-Type-Dependent Behavior of Redox-Hopping in MOFs─Does Charge Transport Have a Preferred Direction?
Ru-NU-1000 particles · Powder · SEM before and after SALI; SI states JEOL IT500 SEM.
2024 · Redox-active conductive metal-organic framework with high lithium capacities at low temperatures
SKIER-5/Super P/PVDF electrode · Electrode · Pristine, first discharge, and first charge states; NEXAFS under ultrahigh vacuum by total electron yield
2024 · Redox-active conductive metal-organic framework with high lithium capacities at low temperatures
SKIER-5 cyan solid powder · Powder · SEM secondary electron mode at 20 kV and 8-10 mm working distance; TEM at 200 kV
2024 · Regulating Electronic Structure of Bimetallic NiFe-THQ Conductive Metal–Organic Frameworks to Boost Catalytic Activity for Oxygen Evolution Reaction
NixFe1-x-THQ series · Powder · Morphology and elemental mapping of the c-MOF powders.
2024 · Revealing the effect of cobalt content and ligand exchange in the bimetallic Ni–Co MOF for stable supercapacitors with high energy density
Ni-M/NiCo-M/Co-M powder comparison series · Powder · High magnification 100 k and low magnification 10 k images; Hitachi SU8000
2024 · Revealing the effect of cobalt content and ligand exchange in the bimetallic Ni–Co MOF for stable supercapacitors with high energy density
KNiCoPO4 powder · Powder · KNiCoPO4 imaged at 10 k, 50 k, and 100 k; element maps for Ni, Co, K, P, and O
2024 · Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors
as-synthesised UiO-66-NH2 light-yellow powder · Powder · SEM on gold-sprayed prepared sample using Hitachi SU8010; TEM on Talos F200X G2.
2024 · Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors
UiO-66-NH2@PAA particles · Powder · Supplemental SEM image of UiO-66-NH2@PAA, corresponding to Figure S2.
2024 · Solid-State Electrochemical Carbon Dioxide Capture by Conductive Metal-Organic Framework Incorporating Nickel Bis(diimine) Units
Ni3(HITP)2 recovered after capture-release cycling · Powder · Recovered MOF after cycling compared with pre-test morphology.
2024 · Solid-State Electrochemical Carbon Dioxide Capture by Conductive Metal-Organic Framework Incorporating Nickel Bis(diimine) Units
As-synthesised Ni3(HITP)2 dark-blue powder · Powder · ZEISS GeminiSEM 450; material pressed onto carbon conductive tape; 8 mm working distance; 20 kV beamline; 10^-4 torr vacuum.
2024 · Superior Charge Transport in Ni-Diamine Conductive MOFs
Pristine Cu3(HITT)2 black powder · Powder · SEM at MIT MRSEC on Zeiss Merlin; operating voltage 1-4 kV.
2024 · Superior Charge Transport in Ni-Diamine Conductive MOFs
Pristine Ni3(HITT)2 black powder · Powder · SEM at MIT MRSEC on Zeiss Merlin; operating voltage 1-4 kV.
2024 · Synergistic Enhancement of Supercapacitors with Cobalt–Copper Bimetal–Organic Framework
Co-MOF powder · Powder · SEM morphology imaging of Co-MOF
2024 · Synergistic Enhancement of Supercapacitors with Cobalt–Copper Bimetal–Organic Framework
CoCu-MOF powder, Co:Cu = 6:1 feed · Powder · SEM/HAADF-STEM morphology and elemental mapping of CoCu-MOF
2024 · Synthesis and structure of a non-van-der-Waals two-dimensional coordination polymer with superconductivity
Cu3BHT micro-crystal array / multicrystalline film · Thin Film · FEI Quattro S, 5-30 kV; no supplementary metal coating required because of Cu3BHT conductivity.
2024 · Synthesis of a highly conductive coordination polymer film via a vapor-solid phase chemical conversion process
Ag5BHT thin films · Thin Film · SEM of Ag2O/H6BHT precursor interfaces, converted Ag5BHT thin films, and film folds.
2024 · Synthesis of a highly conductive coordination polymer film via a vapor-solid phase chemical conversion process
Crystalline Ag5BHT powder from vapour-solid conversion · Powder · SEM at 10 kV per SI characterisation conditions.
2024 · Synthesis of millimeter-scale ZIF-8 single crystals and their reversible crystal structure changes
as-synthesised SC-ZIF-8 single crystals · Single Crystal · SEM at accelerating voltage of 5 kV; optical/SEM morphology also shown in SI Figure S1.
2024 · Synthesis of Stable 2D Conductive Lanthanide Organic Frameworks (Lu-HHTP) for High-Performance Humidity Sensors
Lu-HHTP black powder · Powder · SEM images recorded using JEOL JSM 6700F; HAADF-STEM imaged Lu, C and O dispersion
2024 · Synthesis, Characterization, and Catalytic Performance of a New Heterobimetallic Y/Tb Metal-Organic Framework with High Catalytic Activity
Y/Tb-MOF bulk catalyst powder/crystals · Powder · Backscattered FESEM images; elemental mapping for Y and Tb distribution; histogram from 100 particles.
2024 · Three-type precursors for low-temperature solution-processed void-and-crack-free copper(I) iodide films: comparison of electrical conductivities and optical transparency
CuI(1A2P) film on glass · Thin Film · CuI(1A2P) films on glass prepared from 0.13, 0.26, 0.35 and 0.50 M precursor solutions after heating to 150 deg C.
2024 · Three-type precursors for low-temperature solution-processed void-and-crack-free copper(I) iodide films: comparison of electrical conductivities and optical transparency
CuI(1A2P) film on FTO · Thin Film · CuI(1A2P) films on FTO glass substrate using 0.13, 0.26, 0.35 and 0.50 M precursor solutions.
2024 · Toward Enhancing Performance of Electromagnetic Wave Absorption for Conductive Metal-Organic Frameworks: Nanostructure Engineering or Crystal Morphology Controlling
A-Cu-HHTP nanosheet powder · Nanosheet · SEM images used to determine nanosheet morphology and approximate sheet thickness.
2024 · Toward Enhancing Performance of Electromagnetic Wave Absorption for Conductive Metal-Organic Frameworks: Nanostructure Engineering or Crystal Morphology Controlling
B-Cu-HHTP nanorod powder · Powder · SEM images used to determine nanorod morphology and average diameter.
2024 · Toward Enhancing Performance of Electromagnetic Wave Absorption for Conductive Metal-Organic Frameworks: Nanostructure Engineering or Crystal Morphology Controlling
C-Cu-HHTP nanoball powder · Powder · SEM images used to determine nanoball/agglomerated morphology.
2024 · Tri-Metallic Catalyst for Oxygen Evolution Reaction Enables Continuous Operation of Anion Exchange Membrane Electrolyzer at 1A cm−2 for Hundreds of Hours
All synthesised MOF-74 analogues · Powder · SEM imaging of as-synthesised MOF powder morphology.
2024 · Triazacoronene-Based 2D Conductive Metal–Organic Framework for High-Capacity Lithium Storage
as-synthesised Cu-TAC powder · Powder · Rod-like microcrystals and lattice fringes; elemental mapping of a single Cu-TAC rod.
2024 · Triggering Anodic Luminol Electrochemiluminescence through Electrostatic Interactions: An Innovative Approach Utilizing Conductive Metal-Organic Framework Co-HHTP
luminol@Co-HHTP powder · Powder · Guest-loaded luminol@Co-HHTP powder.
2024 · Triggering Anodic Luminol Electrochemiluminescence through Electrostatic Interactions: An Innovative Approach Utilizing Conductive Metal-Organic Framework Co-HHTP
Co-HHTP powder · Powder · SEM at 15.0 kV; TEM/HR-TEM at 200 kV.
2024 · Tunable Charge Transport and Spin Dynamics in Two-Dimensional Conjugated Metal-Organic Frameworks
Ni3(HATI_H)2 black powder · Powder · SEM morphology and HRTEM/FFT lattice imaging of bulk powders.
2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance
Co-DHHBTN powder · Powder · SEM at 5 kV; EDX at 15 kV; TEM at 200 kV after drop-casting ethanol suspension onto copper grid.
2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance
Cu-DHHBTN powder · Powder · SEM at 5 kV; EDX at 15 kV; TEM at 200 kV after drop-casting ethanol suspension onto copper grid.
2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance
Ni-DHHBTN powder · Powder · SEM at 5 kV; EDX at 15 kV; TEM at 200 kV after drop-casting ethanol suspension onto copper grid.
2024 · Unleashing the room temperature boronization: Blooming of Ni-ZIF nanobuds for efficient photo/electro catalysis of water
24-BNZ powder / 24 h boronized Ni-ZIF · Powder · Morphology of NZ, 4-BNZ, 9-BNZ, 24-BNZ and 48-BNZ at micron/nanoscale; 24-BNZ mature flower.
2024 · Upgrading Structural Conjugation in Three-Dimensional Ni-Based Metal-Organic Frameworks for Promoting Electrical Conductivity and Specific Capacitance
as-synthesised Ni-BPE crystals · Single Crystal · SEM Regulus-8100; images at 100 um, 5 um, 1 um scales; EDS C/N/O/Ni mapping
2024 · Upgrading Structural Conjugation in Three-Dimensional Ni-Based Metal-Organic Frameworks for Promoting Electrical Conductivity and Specific Capacitance
as-synthesised Ni-BPY crystals · Single Crystal · SEM Regulus-8100; images at 100 um, 5 um, 1 um scales; EDS C/N/O/Ni mapping
2024 · Vertical Conductive Metal–Organic Framework Single-Crystalline Nanowire Arrays for Efficient Electrocatalytic Hydrogen Evolution
Ag-MOF-NWs · Single Crystal · Morphology comparison of Ag-MOF-Film, Ag-MOF-MWs and Ag-MOF-NWs formed after different reaction times.
2024 · ZnS/MnO2 metal organic framework based conductive hydrogel for highly selective and sensitive detection of glutathione in serum samples
2 wt% ZnS/MnO2-MOF hydrogel electrode · Electrode · Zeiss EVO 18 SEM; EDX model JIB-4700F. Images at scale bars from 100 um to 10 um and EDX spectrum/table for hydrogel.
2024 · ZnS/MnO2 metal organic framework based conductive hydrogel for highly selective and sensitive detection of glutathione in serum samples
Solvothermal ZnS/MnO2-MOF powder · Powder · Supplementary Fig. S1: SEM image, EDS elemental maps for O, C, Zn, F, Mn, S, N and merged elements, plus embedded EDS table for ZnS/MnO2-MOF.
2023 · 2D conjugated metal-organic framework as a proton-electron dual conductor
As-synthesised Zn-HHTP-H2O powder · Powder · SEM rod morphology; TEM/HRTEM viewed along [001].
2023 · 2D conjugated metal-organic framework as a proton-electron dual conductor
Zn-HHTP-urea powder · Powder · Characterisation of urea incorporation, oxidation state, Zn binding-energy shift, rod morphology and elemental distribution.
2023 · 2D metal-organic frameworks for ultraflexible electrochemical transistors with high transconductance and fast response speeds
Pristine Cu3(HHTP)2 thin film · Thin Film · Film morphology, roughness and thickness as a function of layer-by-layer growth cycles.
2023 · A Conductive 2D Conjugated Tetrathia[8]circulene-Based Nickel Metal–Organic Framework for Energy Storage
as-synthesised Ni-TTC black powder · Powder · HR-TEM on Themis 300 Cryo-TEM; SEM/EDS on Toshiba SU8020 SEM
2023 · A Conductive Metal−Organic Framework Based on Triptycene Ligand: An Effective Electrochemical Sensor for Glucose and H2O2 Detection in Food and Human Serum
Cu-HHTT MOF domains in Cu-HHTT/CF · Unknown · SEM by ZEISS Sigma 300; TEM by FEI-Talos F200S/FEI Tecnai G2 F20 X-Twin.
2023 · A Humidity-Induced Large Electronic Conductivity Change of 107 on a Metal-Organic Framework for Highly Sensitive Water Detection
(NH2)2-MIL-125 powder · Powder · SEM images of as-synthesised (NH2)2-MIL-125
2023 · A Novel Electrocatalyst Pd(II)@Ni3(HITP)2 for Ultrasensitive Detection of Chloramphenicol: Experimental and Computational Investigation
Pd(II)@Ni3(HITP)2, PdCl2 loading mass 0.05 mL/mg · Powder · Elemental maps for pristine and PdCl2-loaded samples at 0.02, 0.05, and 0.076 mL/mg.
2023 · A Novel Electrocatalyst Pd(II)@Ni3(HITP)2 for Ultrasensitive Detection of Chloramphenicol: Experimental and Computational Investigation
Pd(II)@Ni3(HITP)2, PdCl2 loading mass 0.05 mL/mg · Powder · Morphology and lattice/fringe comparison before and after PdCl2 loading.
2023 · A Pyrazine-Based 2D Conductive Metal-Organic Framework for Efficient Lithium Storage†
As-synthesised TPQG-Cu-MOF black powder · Powder · FE-SEM, TEM and HRTEM used to assess particle morphology and lattice fringes.
2023 · A simplistic approach for the synthesis of Covalent Organic Frameworks(COFs) comprising of tetrafunctionalized porphyrin and polyoxometalates to uncover catalytic applications
P@Cu-AndCOF bulk solid · Powder · Bulk P@Cu-AndCOF powder/solid.
2023 · A simplistic approach for the synthesis of Covalent Organic Frameworks(COFs) comprising of tetrafunctionalized porphyrin and polyoxometalates to uncover catalytic applications
P@Ni-AndCOF bulk solid · Powder · Bulk P@Ni-AndCOF powder/solid.
2023 · A tribenzocoronene-based 2D conductive metal-organic framework for efficient energy storage
as-prepared Cu-TBC black powder · Powder · TEM lattice fringes along [001]; SEM morphology
2023 · A Triptycene-Based 2D MOF with Vertically Extended Structure for Improving the Electrocatalytic Performance of CO2 to Methane
exfoliated 2D-vc-MOF(Cu) nanosheets · Nanosheet · Exfoliated nanosheets characterised for lateral size, thickness, chemical retention, and diffraction.
2023 · A Triptycene-Based 2D MOF with Vertically Extended Structure for Improving the Electrocatalytic Performance of CO2 to Methane
2D-vc-MOF(Cu) blue-black powder · Powder · Morphology and lattice imaging of pristine powder.
2023 · Ag Nanoparticles-Induced Metallic Conductivity in Thin Films of 2D Metal-Organic Framework Cu3(HHTP)2
AgNPs@Cu3(HHTP)2 thin film · Thin Film · Surface morphology and film thickness
2023 · Ag Nanoparticles-Induced Metallic Conductivity in Thin Films of 2D Metal-Organic Framework Cu3(HHTP)2
Pristine Cu3(HHTP)2 thin film · Thin Film · Surface morphology and film thickness
2023 · Ag Nanoparticles-Induced Metallic Conductivity in Thin Films of 2D Metal-Organic Framework Cu3(HHTP)2
Pristine CuTCNQ thin film · Thin Film · Morphology comparison of pristine CuTCNQ and AgNPs@CuTCNQ
2023 · Air/liquid interfacial formation process of conductive metal–organic framework nanosheets
HITP-Ni-NS_1 min · Nanosheet · HITP-Ni-NS on Si substrates after a single deposition cycle at pi = 5 mN m-1; AFM images obtained after air exposure to reduce noisy radical-related imaging.
2023 · Anionic metal-organic framework modified separator boosting efficient Li-ion transport
UIOSOL@PP separator · Thin Film · Li|Cu cells with PP or UIOSOL@PP separators; initial nucleation after 0.5 mA cm-2 for 12 min, after 0.5 mAh cm-2, and after 2 mAh cm-2.
2023 · Anionic metal-organic framework modified separator boosting efficient Li-ion transport
UIOSOL@PP separator · Thin Film · Post-cycle Li electrodes from Li|Li symmetric cells with PP and UIOSOL@PP separators.
2023 · Anionic metal-organic framework modified separator boosting efficient Li-ion transport
UIO-SOLi nanoparticles · Powder · SEM image of as-synthesised UIO-SOLi nanoparticles.
2023 · Anionic metal-organic framework modified separator boosting efficient Li-ion transport
UIOSOL@PP separator · Thin Film · Surface/cross-section morphology and wettability of PP and UIOSOL@PP separators.
2023 · Boosting electrocatalytic CO2 reduction reaction over viologen-functionalized metal-organic frameworks by enhancement of electron-transfer capacity
Vg-Por(Co)-MOF(9:1) · Powder · Morphology and elemental mapping of Vg-Por(Co)-MOF(9:1); family SEM/TEM/AFM in SI.
2023 · Chemical Vapor Deposition and High-Resolution Patterning of a Highly Conductive Two-Dimensional Coordination Polymer Film
Bottom-up lift-off patterned CVD Cu-BHT features · Thin Film · Bottom-up additive lithography patterns; SEM/AFM close-ups and confocal images.
2023 · Chemical Vapor Deposition and High-Resolution Patterning of a Highly Conductive Two-Dimensional Coordination Polymer Film
Top-down Ar plasma etched Cu-BHT line patterns · Thin Film · Top-down Ar plasma etching lithography; micro-XRD scans across line patterns.
2023 · Chemical Vapor Deposition and High-Resolution Patterning of a Highly Conductive Two-Dimensional Coordination Polymer Film
Solvent-free Cu-BHT powder product · Powder · PXRD in transmission mode over 1.2 deg < 2theta < 45 deg; SEM at 10 keV after 2 nm Pt coating.
2023 · Chemiresistive and chem-FET Sensor: π-d conjugated metal-organic framework for ultra-sensitive and selective carbon monoxide detection
as-synthesised Zn-HHTP blue powder · Powder · MIRA3 LMH FE-SEM; inbuilt Oxford Instruments EDS
2023 · Conductive Lanthanide Metal-Organic Frameworks with Exceptionally High Stability
as-synthesised Gd4-MOF single crystals · Single Crystal · rod-like Gd4-MOF single crystal profile
2023 · Conductive metal-organic framework flowers facilitate the anchoring and conversion kinetics of polysulfides for lithium‑sulfur batteries
flower-like MIL-47/CNT interlayer · Electrode · Hitachi S-4800 SEM and FEI Talos 200X TEM used to inspect flower-like MIL-47 on CNT; V/O/C mapping and lattice spacing measured.
2023 · Conductive metal-organic frameworks with wheel-shaped metallomacrocycle subunits as high-performance supercapacitor electrodes
MWM-1 (Co/2Ni) powder/crystals · Powder · SEM/HRTEM images of MWM-1(Co) and MWM-1(Co/2Ni)
2023 · Conjugated Nonplanar Copper-Catecholate Conductive Metal-Organic Frameworks via Contorted Hexabenzocoronene Ligands for Electrical Conduction
c-HBC-12O-Cu black powder · Powder · Hitachi SU8010, 5.0 kV.
2023 · Conjugated Nonplanar Copper-Catecholate Conductive Metal-Organic Frameworks via Contorted Hexabenzocoronene Ligands for Electrical Conduction
c-HBC-6O-Cu black powder · Powder · Hitachi SU8010, 5.0 kV.
2023 · Conjugated Nonplanar Copper-Catecholate Conductive Metal-Organic Frameworks via Contorted Hexabenzocoronene Ligands for Electrical Conduction
c-HBC-8O-Cu black powder · Powder · Hitachi SU8010, 5.0 kV.
2023 · Controllable Construction of Two-Dimensional Conductive M3(HHTP)2 Nanorods for Electrochemical Sensing of Malachite Green in Fish
Cu3(HHTP)2 nanorod powder · Powder · Cu3(HHTP)2 before and after 30 days exposure to air.
2023 · Controllable Construction of Two-Dimensional Conductive M3(HHTP)2 Nanorods for Electrochemical Sensing of Malachite Green in Fish
Cu/Ni/Co M3(HHTP)2 nanorod powder series · Powder · Morphology comparison of Cu3(HHTP)2, Ni3(HHTP)2 and Co3(HHTP)2 nanorods.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu1 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu10 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu11 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu12 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu2 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu3 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu4 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu5 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu6 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu7 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu8 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu9 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Ni1 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Ni2 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Ni3 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Ni4 · Powder · Field-emission SEM morphology assessment of as-synthesised powder.
2023 · Copper-cobalt bimetallic conductive metal–organic frameworks as bifunctional oxygen electrocatalyst in alkaline and neutral media
As-synthesised Cu3(HITP)2 powder · Powder · FESEM JEOL JSM-7800F with EDS; TEM JEOL JEM-2100F.
2023 · Copper-cobalt bimetallic conductive metal–organic frameworks as bifunctional oxygen electrocatalyst in alkaline and neutral media
As-synthesised CuCo-HITP powder · Powder · FESEM JEOL JSM-7800F with EDS; TEM JEOL JEM-2100F.
2023 · Copper-cobalt bimetallic conductive metal–organic frameworks as bifunctional oxygen electrocatalyst in alkaline and neutral media
CuCo-HITP/Nafion glassy-carbon working electrode · Electrode · Neutral 0.1 M PBS; oxygen-saturated for ORR/OER after O2 bubbling; LSV at 5 mV s-1; EIS 10^-2 to 10^5 Hz with +/-5 mV amplitude; potentials converted to RHE.
2023 · Correlation in Structural Architecture toward Fabrication of Schottky Device with a Series of Pyrazine Appended Coordination Polymers
As-synthesised crystals/powder of 1 · Powder · FESEM micrographs at 1 um scale.
2023 · Correlation in Structural Architecture toward Fabrication of Schottky Device with a Series of Pyrazine Appended Coordination Polymers
As-synthesised crystals/powder of 2 · Powder · FESEM micrographs at 1 um scale.
2023 · Correlation in Structural Architecture toward Fabrication of Schottky Device with a Series of Pyrazine Appended Coordination Polymers
As-synthesised crystals/powder of 3 · Powder · FESEM micrographs at 1 um scale.
2023 · Creating Dual Active Sites in Conductive Metal-Organic Frameworks for Efficient Water Splitting
IrCo-CAT/CC nanorod arrays · Electrode · Characterisation of IrCo-CAT/CC and RhCo-CAT/CC analogues.
2023 · Creating Dual Active Sites in Conductive Metal-Organic Frameworks for Efficient Water Splitting
Co-CAT/CC nanorod arrays, 12 h solvothermal · Electrode · Co-CAT/CC samples synthesised for 4, 12, and 20 h; statistics from SEM/TEM images.
2023 · Creating Dual Active Sites in Conductive Metal-Organic Frameworks for Efficient Water Splitting
RuCo-CAT/CC nanorod arrays · Electrode · Morphology and elemental distribution of RuCo-CAT NRAs on CC.
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
Cu1Co1HHTP powder · Powder · Structure and morphology after cycling stability test
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
CoHHTP powder · Powder · SEM morphology of serial cMOF catalysts
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
Cu1Co1HHTP powder · Powder · SEM morphology of serial cMOF catalysts
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
Cu1Co2HHTP powder · Powder · SEM morphology of serial cMOF catalysts
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
Cu2Co1HHTP powder · Powder · SEM morphology of serial cMOF catalysts
2023 · Cu/Co bimetallic conductive MOFs: Electronic modulation for enhanced nitrate reduction to ammonia
CuHHTP powder · Powder · SEM morphology of serial cMOF catalysts
2023 · Decoupling Redox Hopping and Catalysis in Metal-Organic Frameworks -based Electrocatalytic CO2 Reduction
CoPc@NU-1000-h · Powder · PXRD range 1.5 < 2theta < 30 deg, 0.05 deg step, 2 deg/min; SEM on sputter-coated samples
2023 · Diazo-reaction based dual-mode colorimetric-electrochemical sensing of nitrite in pickled food
Cu-MOFs/EGP · Electrode · Morphology of bare EGP and Cu-MOFs/EGP; elemental mapping for C, S, Cu, O and N.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(3,5DMP)TU 2D nanosheet · Nanosheet · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(ethyl)TU 2D sheet · Nanosheet · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(m-tolyl)TU 1D nanowire · Powder · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(methyl)TU 2D nanosheet · Nanosheet · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(propyl)TU 2D nanosheet · Nanosheet · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
CuCl-(tert-butyl)TU 2D nanosheet · Nanosheet · Characterisation of linker-substituted CuCl-TU morphology and elemental distribution.
2023 · Dimensional Control of Highly Anisotropic and Transparent Conductive Coordination Polymers for Solution-Processable Large-Scale 2D Sheets
2D CuCl-TU polymer nanosheet · Nanosheet · Morphology and elemental mapping of 3D, 2D and 1D CuCl-TU samples; AFM thickness and lateral size.
2023 · Dominant Role of Hole Transport Pathway in Achieving Record High Photoconductivity in Two-Dimensional Metal–Organic Frameworks
Cu/Zn-HHTP dried powder · Powder · Energy dispersive X-ray spectroscopy and scanning electron microscopy of Cu-, Cu/Zn- and Zn-HHTP powders.
2023 · Effects of Transition Metals on Metal-Octaaminophthalocyanine-Based 2D Metal-Organic Frameworks
Cu-CuOAPc powder and cold-pressed pellet · Powder · Multicrystalline particle sizes for five main MOFs and Ni-NiOAPc
2023 · Electrically conductive [Fe4S4]-based organometallic polymers
[Fe4S4Cl2(Me-NHC)] (1) powder · Powder · Powder dispersed on carbon tape under N2; exposed to air on transfer into SEM.
2023 · Electrically conductive Pt-MOFs for acidic oxygen reduction: Optimized performance via altering conjugated ligands
Pt3(C12N6O6)2 MOF black powder · Powder · Tecnai F-20 HRTEM and FE-SEM at 5.0 kV.
2023 · Electrically Conductive π-Intercalated Graphitic Metal-Organic Framework Containing Alternate π-Donor/Acceptor Stacks
iGMOF1 black powder · Powder · FE-SEM analysis with Hitachi Regulus-8230 instrument.
2023 · Electrochromism in Isoreticular Metal-Organic Framework Thin Films with Record High Coloration Efficiency
Zn-NDI@FTO thin film · Thin Film · Thin-film XRD in theta-theta mode, 3-26 degrees 2theta, Cu Kalpha; SEM with Zeiss 1550 Schottky FE-SEM; ImageJ for thickness
2023 · Electrochromism in Isoreticular Metal-Organic Framework Thin Films with Record High Coloration Efficiency
Zn-PDI@FTO thin film · Thin Film · Thin-film XRD in theta-theta mode, 3-26 degrees 2theta, Cu Kalpha; SEM with Zeiss 1550 Schottky FE-SEM; ImageJ for thickness
2023 · Electrochromism in Isoreticular Metal-Organic Framework Thin Films with Record High Coloration Efficiency
Zn-PMDI@FTO thin film · Thin Film · Thin-film XRD in theta-theta mode, 3-26 degrees 2theta, Cu Kalpha; SEM with Zeiss 1550 Schottky FE-SEM; ImageJ for thickness
2023 · Elucidating d-π conjugated two-dimensional 2,3,6,7,10,11-hexahydroxytriphenylene based conductive metal-organic framework for hybrid supercapacitors
dark blue Ni3(HHTP)2 crystals · Powder · SEM morphology of synthesised Ni3(HHTP)2
2023 · Engineering defective trimetallic metal-organic framework nanosheets for advanced water oxidation electrocatalysis
NiFeZn-1 MOF nanosheets · Nanosheet · NiFeZn-1 and NiFeZn-5 compositional comparison
2023 · Engineering defective trimetallic metal-organic framework nanosheets for advanced water oxidation electrocatalysis
NiFeZn MOF nanosheets · Nanosheet · elemental composition of as-synthesised NiFeZn MOF nanosheets
2023 · Engineering defective trimetallic metal-organic framework nanosheets for advanced water oxidation electrocatalysis
NiFeMn MOF nanosheets · Nanosheet · NiFeMn, NiFeCu, NiFePb, and NiFeCd nanosheet confirmation
2023 · Engineering defective trimetallic metal-organic framework nanosheets for advanced water oxidation electrocatalysis
NiFeZn MOF nanosheets · Nanosheet · as-synthesised nanosheets; HRTEM lattice-distance measurement
2023 · Enhanced cobalt MOF electrocatalyst for oxygen evolution reaction via morphology regulation
Co-MOF-C electrode after OER testing · Electrode · Morphology and elemental mapping of Co-MOF-C after chronoamperometric analysis
2023 · Enhanced cobalt MOF electrocatalyst for oxygen evolution reaction via morphology regulation
Co-MOF-A powder · Powder · SEM morphology of Co-MOF-A
2023 · Enhanced cobalt MOF electrocatalyst for oxygen evolution reaction via morphology regulation
Co-MOF-B powder · Powder · SEM morphology of Co-MOF-B
2023 · Enhanced cobalt MOF electrocatalyst for oxygen evolution reaction via morphology regulation
Co-MOF-C powder · Nanosheet · SEM/TEM morphology and EDS elemental maps of Co-MOF-C
2023 · Enhancing the photo-electrocatalytic properties of g-C3N4 by boron doping and ZIF-8 hybridization
B-g-C3N4/ZIF-8 powder · Powder · Elemental maps for B-g-C3N4/ZIF-8 and tabulated actual atomic percentages for all samples.
2023 · Enhancing the photo-electrocatalytic properties of g-C3N4 by boron doping and ZIF-8 hybridization
B-g-C3N4/ZIF-8 powder · Powder · Morphology comparison for g-C3N4, B-g-C3N4, g-C3N4/ZIF-8 and B-g-C3N4/ZIF-8.
2023 · Enhancing the Photocatalytic Degradation Efficiency of Dyes of Copper-Based Metal-Organic Frameworks through a Dimension-Induced Structural Strategy
Complex 1 reddish-brown acicular crystals · Single Crystal · SEM of complex 1; TEM after grinding
2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers
2DCP-CuPc film on FTO-coated glass · Thin Film · SEM imaging of film on conductive FTO-coated glass substrate.
2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers
2DCP-CuPc thin film on fused silica · Thin Film · Film thickness and film quality on fused silica/FTO-coated glass.
2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers
2DCP-NiPc film on FTO-coated glass · Thin Film · SEM imaging of film on conductive FTO-coated glass substrate.
2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers
2DCP-NiPc thin film on fused silica · Thin Film · Film thickness and film quality on fused silica/FTO-coated glass.
2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers
2DCP-CuPc powder · Powder · Powder/polycrystal morphology and lattice fringes.
2023 · Experimental manifestation of redox-conductivity in metal-organic frameworks and its implication for semiconductor/insulator switching
UU-100(Co) thin film on FTO · Thin Film · SEM top and cross-section images plus thin-film XRD for UU-100(Co) on FTO.
2023 · Experimental manifestation of redox-conductivity in metal-organic frameworks and its implication for semiconductor/insulator switching
Zn(pyrazol-NDI) thin film on FTO · Thin Film · SEM top-view and cross-section images of FTO-supported Zn(pyrazol-NDI) thin film.
2023 · Experimental manifestation of redox-conductivity in metal-organic frameworks and its implication for semiconductor/insulator switching
Zr(dcphOH-NDI) thin film on FTO · Thin Film · SEM top and cross-section images plus thin-film XRD for Zr(dcphOH-NDI) on FTO.
2023 · Framework Dimensional Control Boosting Charge Storage in Conjugated Coordination Polymers
as-synthesised 1D-CuTABQ powder · Powder · Gemini 300 SEM and JEOL 2100 TEM; HRTEM lattice fringe analysis
2023 · Framework Dimensional Control Boosting Charge Storage in Conjugated Coordination Polymers
as-synthesised 2D-CuTABQ powder · Powder · Gemini 300 SEM and JEOL 2100 TEM; HRTEM lattice fringe analysis
2023 · From non-conductive MOF to proton-conducting metal-HOFs: a new class of reversible transformations induced by solvent-free mechanochemistry
Mn-HOF-FA powder · Powder · Helios 5 Hydra DualBeam SEM with EDS maps; elemental maps at 200000x
2023 · Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer
PcCu-Zn-H film on Si/SiO2 · Thin Film · PcCu-Zn-H and Co-HHTP-H films scraped from films for TEM; SEM cross-sections.
2023 · Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer
Zn-HHTP-H film on Si/SiO2 · Thin Film · Zn-HHTP-H scraped from film; cross-sectional SEM and electron microscopy.
2023 · Highly conductive three-dimensional metal organic frameworks from small in situ generated ligands
Co-F as-synthesised pressed pellet · Pellet · SEM of Co-F pellet to assess interconnectivity between microcrystalline regions; images at 2000X and 5000X in SI
2023 · Isonicotinic acid-based copper-MOF: An exotic redox propertied electrode material for high energy asymmetric supercapacitor
Sky blue Cu-MOF crystals · Powder · SEM used to depict surface morphology of synthesised Cu-complexes.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Co3(HHTP)2 film on Au electrode · Thin Film · Co3(HHTP)2 film deposited on Au electrode at 0.3 V for 60 min.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Ag-electroplated Cu3(HHTP)2 film electrode · Electrode · Cu3(HHTP)2 film used as an electrode for electroplating Ag from 0.05 M AgNO3 at -0.1 V for 1 min.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 coating on carbon fibres · Electrode · Carbon fibres imaged before and after Cu3(HHTP)2 coating at 0.25 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 film on Au/Cr/glass anode deposited at 0.25 V for 45 min · Thin Film · Au anode film after electrochemical reaction at 0.25 V for 45 min.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 film on FTO electrode · Thin Film · Cu3(HHTP)2 film deposited on FTO electrode at 0.25 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 Au-film growth kinetics series · Thin Film · Potentiostatic deposition at 0.25 V for 5 s to 10 h on Au electrodes.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 film on HOPG electrode · Thin Film · Cu3(HHTP)2 film deposited on HOPG electrode at 0.25 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 film on ITO electrode · Thin Film · Cu3(HHTP)2 film deposited on ITO electrode at 0.25 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 nanorods grown in Au-coated PCTE membrane · Electrode · Cu3(HHTP)2 growth confined in Au-coated PCTE membrane; released after PCTE dissolution.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Patterned Cu3(HHTP)2 films on prepatterned electrodes · Thin Film · Selective growth on conductive regions of prepatterned electrodes.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 Au-film growth kinetics series · Thin Film · Cu3(HHTP)2 films deposited for 15 min at 0.25, 0.30 and 0.35 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu3(HHTP)2 film on silicon electrode · Thin Film · Cu3(HHTP)2 film deposited on silicon electrode at 0.25 V.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Solvothermally grown Cu3(HHTP)2 film on Au electrode · Thin Film · Solvothermally grown Cu3(HHTP)2 film on Au electrode.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Cu2TBA film on Au electrode · Thin Film · Cu2TBA film deposited on Au electrode at 0.3 V for 60 min.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
YbHHTP film on Au electrode · Thin Film · YbHHTP film deposited on Au electrode at 0.25 V for 60 min.
2023 · Ligand-Oxidation-Based Anodic Synthesis of Oriented Films of Conductive M-Catecholate Metal-Organic Frameworks with Controllable Thickness
Zn3(HHTP)2 film on Au electrode · Thin Film · Zn3(HHTP)2 film deposited on Au electrode at 0.3 V for 30 min.
2023 · Linker-Based Bandgap Tuning in Conductive MOF Solid Solutions
Cu3(TATHB)2 / Cu-TATHB (x = 0) · Pellet · SEM on JEOL JSM-7401F at 5 kV; TEM on Titan Themis GT 300 at 300 kV with dose rate 20-50 e A^-2 s^-1.
2023 · Linker-Based Bandgap Tuning in Conductive MOF Solid Solutions
Cu3(HAB)(TATHB) · Pellet · Particle length and width estimated from SEM images over HAB-ratio series.
2023 · Linker-Based Bandgap Tuning in Conductive MOF Solid Solutions
Cu3(HAB)(TATHB) · Pellet · SEM-EDS used to determine N/(N+O) ratios and elemental mapping of O and N.
2023 · Metal-Organic Framework Glass Catalysts from Melting Glass-Forming Cobalt-Based Zeolitic Imidazolate Framework for Boosting Photoelectrochemical Water Oxidation
10% Co-agZIF-62 glass · Powder · Morphology and amorphous-state verification of Co-agZIF-62
2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor
Zn,Ni-CAT-T4 · Electrode · Zn,Ni-CAT-T4 electrode tested at 3 mA cm-2 for 30000 cycles; separate KOH test at 10 mA cm-2 for 5000 cycles.
2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor
Zn,Ni-CAT-T4 · Electrode · Morphology and elemental distribution of Zn,Ni-CAT nanorods grown on carbon cloth.
2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor
Zn,Ni-CAT treated for 25 s · Electrode · Morphology comparison for overlong microwave reaction times shown in SI Figure S7.
2023 · Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor
Zn,Ni-CAT treated for 60 s · Electrode · Morphology comparison for overlong microwave reaction times shown in SI Figure S7.
2023 · Modular conductive MOF-gated field-effect biosensor for sensitive discrimination on the small molecular scale
TCP sensor: Cu2TCPP thin film on SnO2/ITO extended gate, 10 growth cycles · Electrode · Cu2TCPP film after 10 growth cycles on SnO2/ITO.
2023 · Modular conductive MOF-gated field-effect biosensor for sensitive discrimination on the small molecular scale
HTP sensor: Cu3HHTP2 thin film on SnO2/ITO extended gate, 10 growth cycles · Electrode · Cu3HHTP2 film after 10 growth cycles on SnO2/ITO.
2023 · MOF-Assimilated High-Sensitive Organic Field-Effect Transistors for Rapid Detection of a Chemical Warfare Agent
CPO-27-Ni colloidal dispersion in DMF/ethanol · Unknown · DLS on CPO-27-Ni colloidal dispersion; SEM on as-synthesised CPO-27-Ni crystals.
2023 · Near IR Bandgap Semiconducting 2D Conjugated Metal-Organic Framework with Rhombic Lattice and High Mobility
Cu2(OHPTP) rod-like single crystals · Single Crystal · Zeiss Gemini 500; powder on carbon pad or MeOH suspension spin-coated to Si substrate.
2023 · Negative electrodes for supercapacitors with good performance using conductive bismuth-catecholate metal-organic frameworks
Bi(HHTP) 12 h nanobelts · Powder · SEM images for 4, 8, 12 and 20 h samples; HRTEM and Bi/O/C mapping emphasised for 12 h sample.
2023 · Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework
Cu-BDC powder · Powder · SI morphology characterisation of Cu-BDC control; SI S1.5 reports FE-SEM at 15 kV and TEM at 200 kV.
2023 · Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework
Cu-H3BTC powder · Powder · SI morphology characterisation of Cu-H3BTC control; SI S1.5 reports FE-SEM at 15 kV and TEM at 200 kV.
2023 · Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework
Cu-H4EBTC powder · Powder · SI morphology characterisation of Cu-H4EBTC control; SI S1.5 reports FE-SEM at 15 kV and TEM at 200 kV.
2023 · Novel aptasensing strategy for efficiently quantitative analyzing Staphylococcus aureus based on defective copper-based metal–organic framework
nattier blue ML-Cu2O@Cu-MOF powder · Powder · Morphology and elemental distribution of ML-Cu2O@Cu-MOF nanospheres; ImageJ used for particle-size distribution. SI S1.5 reports FE-SEM at 15 kV and TEM at 200 kV.
2023 · Novel insights of structure evolution between ZIF and hydroxide via controlled doses of ammonium bifluoride and applications on battery supercapacitor hybrids
M-H10 powder · Nanosheet · Morphology of M-H2, M-H5, M-H10, M-H15 and M-H20 examined by FE-SEM; M-H10 TEM image inserted in Fig. 1c.
2023 · One-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Dual Redox-Active Sites for High-Capacity and Durable Cathodes for Aqueous Zinc Batteries
Cu-BTA-H powder · Powder · Morphology of Cu-BTA-H powder from main Figure 1d and SI Figure S1a-c.
2023 · One-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Dual Redox-Active Sites for High-Capacity and Durable Cathodes for Aqueous Zinc Batteries
Cu-BTA-L powder · Powder · Morphology of low-crystallinity Cu-BTA-L powder.
2023 · One-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Dual Redox-Active Sites for High-Capacity and Durable Cathodes for Aqueous Zinc Batteries
Ni-BTA-H powder · Powder · Morphology of Ni-BTA-H powder.
2023 · Orientation Control of a Two-Dimensional Conductive Metal-Organic Framework Thin Film by a Pyridine Vapor-Assisted Dry Process
(001)-oriented Cu3(HHTP)2 thin film annealed with 3 uL pyridine · Thin Film · SI comparison of as-deposited and pyridine-vapour annealed film surfaces.
2023 · Orientation Control of a Two-Dimensional Conductive Metal-Organic Framework Thin Film by a Pyridine Vapor-Assisted Dry Process
(001)-oriented Cu3(HHTP)2 thin film annealed with 3 uL pyridine · Thin Film · Surface morphology and Al/Cu/C elemental maps of pyridine-vapour annealed Cu3(HHTP)2 film.
2023 · Overcoming Diffusion Limitation of Faradaic Processes: Property-Performance Relationships of 2D Conductive Metal-Organic Framework Cu3(HHTP)2 for Reversible Lithium-Ion Storage
Flake-like Cu3(HHTP)2 powder activated at 60 C · Powder · ZEISS Gemini SEM; EDX at 15 kV using Oxford Instruments X-Max; samples gold-coated briefly to avoid charging.
2023 · Overcoming Diffusion Limitation of Faradaic Processes: Property-Performance Relationships of 2D Conductive Metal-Organic Framework Cu3(HHTP)2 for Reversible Lithium-Ion Storage
Rod-like Cu3(HHTP)2 powder activated at 60 C · Powder · ZEISS Gemini SEM; EDX at 15 kV using Oxford Instruments X-Max; samples gold-coated briefly to avoid charging.
2023 · Overcoming Diffusion Limitation of Faradaic Processes: Property-Performance Relationships of 2D Conductive Metal-Organic Framework Cu3(HHTP)2 for Reversible Lithium-Ion Storage
Flake-like Cu3(HHTP)2 composite electrode · Electrode · SEM and XRD before/after electrode processing; electrodes contain 60 wt% active material and 40 wt% amorphous carbon/binder.
2023 · Overcoming Diffusion Limitation of Faradaic Processes: Property-Performance Relationships of 2D Conductive Metal-Organic Framework Cu3(HHTP)2 for Reversible Lithium-Ion Storage
Rod-like Cu3(HHTP)2 powder activated at 60 C · Powder · SEM at 3 kV InLens detector; compared rod-like and flake-like synthesized products.
2023 · Partial selenium surface modulation of metal organic framework assisted cobalt sulfide hollow spheres for high performance bifunctional oxygen electrocatalysis and rechargeable zinc-air batteries
Se-doped MOF CoS2 hollow spheres · Powder · Hitachi S7400 FESEM at 15 kV; EDX spectrum and elemental mapping of Se-doped MOF CoS2 hollow spheres.
2023 · Piperazine-linked metal covalent organic framework-coated fibers for efficient electro-enhanced solid-phase microextraction of chlorophenols
CuPc-MCOF-coated stainless steel fibre · Electrode · Quanta FEG 250 SEM; coated fibre and enlarged coating morphology.
2023 · Preparation of hierarchical MOF-5 films using morphology controlled ZnO coatings for temperature dependent optical sensors application
MOF-5/ZnO nanorod hybrid thin film · Thin Film · SEM after immersing ZnO thin films in H2BDC/DMF for MOF-5 growth
2023 · Preparation of hierarchical MOF-5 films using morphology controlled ZnO coatings for temperature dependent optical sensors application
H2BDC/DMF-treated ZnO sphere films · Thin Film · SEM of sphere thin films after H2BDC/DMF treatment
2023 · Preparation of hierarchical MOF-5 films using morphology controlled ZnO coatings for temperature dependent optical sensors application
ZnO hollow sphere thin film · Thin Film · SEM morphology of ZnO hollow sphere thin film
2023 · Preparation of hierarchical MOF-5 films using morphology controlled ZnO coatings for temperature dependent optical sensors application
ZnO nanorod thin film · Thin Film · SEM morphology of ZnO nanorod thin films on substrate
2023 · Preparation of hierarchical MOF-5 films using morphology controlled ZnO coatings for temperature dependent optical sensors application
ZnO porous sphere thin film · Thin Film · SEM morphology of ZnO porous sphere thin film
2023 · Pyridyl-Isonicotinoyl Hydrazone-Bridged Zn(II) Coordination Framework with Thiophenedicarboxylato Link: Structure, Biological Activity, and Electrical Conductivity
finely ground/as-synthesised compound 1 powder · Powder · Compound 1 before and after brief dipping in pH 7.4 solution and DMSO.
2023 · Reconstruction of Co/Ni metal-organic-framework based electrode materials with excellent conductivity and integral stability via extended hydrothermal treatment toward improved performance of supercapacitors
Co/Ni-MOF@CC-12 · Electrode · SEM morphology comparison of Co/Ni-MOF@CC-6, Co/Ni-MOF@CC-12 and Co/Ni-MOF@CC-18.
2023 · Redox-Active Mixed-Linker Metal–Organic Frameworks with Switchable Semiconductive Characteristics for Tailorable Chemiresistive Sensing
Mn2[TTF]0.49[NiS4]0.51 powder/crystals · Powder · Field-emission SEM (Hitachi-S4800) and EDX mapping of representative Mn2[TTF]0.49[NiS4]0.51 crystals.
2023 · Redox-Active Two-Dimensional Tetrathiafulvalene-Copper Metal-Organic Framework with Boosted Electrochemical Performances for Supercapatteries
Iodine-treated crystals of 1 (1-ox) · Single Crystal · SEM mapping and EDS spectra for 1, 1-ox and 1-ox'.
2023 · Regulating Crystallization and Lead Leakage of Perovskite Solar Cell Via Novel Polyoxometalate-Based Metal–Organic Framework
POMOF-functionalised perovskite film · Thin Film · Top-view SEM/AFM and KPFM/C-AFM compare control and POMOF-functionalised perovskite films.
2023 · Regulating Crystallization and Lead Leakage of Perovskite Solar Cell Via Novel Polyoxometalate-Based Metal–Organic Framework
POMOF-functionalised perovskite film · Thin Film · Water contact angles; unencapsulated PSCs aged at 85% RH and 85 degC for 12 h.
2023 · Ruthenium(II) complex-grafted conductive metal-organic frameworks with conductivity- and confinement-enhanced electrochemiluminescence for ultrasensitive biosensing application
Ru@Ni3(HITP)2 powder · Powder · SEM images of Ni3(HITP)2 and Ru@Ni3(HITP)2 powders.
2023 · Self-Powered Disinfection Using Triboelectric, Conductive Wires of Metal-Organic Frameworks
Cu-HHTP NW-Cu electrode · Electrode · Mechanism tests after EH2O2E or N2 electroporation-only disinfection; 10 mM PBS pH 7.0; fixed 100 rpm and 1.2 V where stated.
2023 · Self-Powered Disinfection Using Triboelectric, Conductive Wires of Metal-Organic Frameworks
Cu-HHTP NP-Cu electrode · Electrode · Nanoparticle-modified copper mesh morphology and phase assignment.
2023 · Self-Powered Disinfection Using Triboelectric, Conductive Wires of Metal-Organic Frameworks
Cu-HHTP NW-Cu electrode · Electrode · Morphology, lattice fringe, crystallinity and elemental distribution of Cu-HHTP nanowires on Cu mesh.
2023 · Self-Powered Disinfection Using Triboelectric, Conductive Wires of Metal-Organic Frameworks
Cu-HHTP NW-Cu electrode · Electrode · Cu2+ release measured by ICP-MS; temperature before/after EH2O2E operation; morphology and XRD before/after 300 L prototype treatment.
2023 · Self-Powered Infrared Photodetectors with Ultra-High Speed and Detectivity Based on Amorphous Cu-Based MOF Films
p-a-Cu-HHTP MOF film on electrospun nanofibres · Thin Film · Morphology and elemental distribution of p-a-Cu-HHTP particles grown on electrospun fibres.
2023 · Self-supporting electrocatalyst constructed from in-situ transformation of Co(OH)2 to metal-organic framework to Co/CoP/NC nanosheets for high-current-density water splitting
Co/CoP/NC/CoF-550 / 6 h · Electrode · Morphology and elemental mapping of prepared catalysts; SEM instrument FEI Quanta 200F and TEM Tecnai G2 F20.
2023 · Semiconducting Conjugated Coordination Polymer with High Charge Mobility Enabled by “4 + 2” Phenyl Ligands
as-synthesised Cu4DHTTB crystals/powder · Powder · SEM on Toshiba S4800; HRTEM on JEOL 2100F at 120 kV; EDS mapping for Cu, S, O and C.
2023 · Sensing interface based on electrodeposited Cu-BTC microporous film for electrochemical detection of the painkiller paracetamol
Cu-BTC/GCE, 60 min morphology sample · Electrode · FESEM at acceleration voltage of 5 kV on Cu-BTC film grown for 60 min.
2023 · Stabilizing Redox-Active Hexaazatriphenylene in a 2D Conductive Metal–Organic Framework for Improved Lithium Storage Performance
Cu-HATN powder · Powder · Rod-like crystal morphology and lattice/channel visualisation.
2023 · Strategies to enhance electrochemical performance of isoreticular 2d conjugated metal correlated organic frameworks via transition metals intercalation for battery-supercapacitor hybrids
As-synthesised Cu-MOF crystals/powder · Powder · Supplementary SEM micrograph; no imaging conditions reported.
2023 · Strategies to enhance electrochemical performance of isoreticular 2d conjugated metal correlated organic frameworks via transition metals intercalation for battery-supercapacitor hybrids
As-synthesised Ni-MOF crystals/powder · Powder · Supplementary SEM micrograph; no imaging conditions reported.
2023 · Sulfur-Bridged Bonds Heightened Na-Storage Properties in MnS Nanocubes Encapsulated by S-Doped Carbon Matrix Synthesized via Solvent-Free Tactics for High-Performance Hybrid Sodium Ion Capacitors
MSC-850 C-sublimed sulfur / MSC · Powder · SEM/TEM/HRTEM images and EDS elemental maps for MSC; optimisation SEM in SI.
2023 · Super Proton Conductivity Through Control of Hydrogen-Bonding Networks in Flexible Metal–Organic Frameworks
MIL-88B · Powder · Morphology of MIL-88B, MIL-88B-NH2, MIL-88B-SO3H and MIL-101 comparison.
2023 · Synthesis, structure, and lithium storage performance of non-conductive metal–organic frameworks for high-performance lithium-ion batteries
Ni-mba-K product · Powder · FEI Nova Nano SEM; FEI TecnaiG2F30 HRTEM; before and after cycling SEM in SI
2023 · Synthesis, structure, and lithium storage performance of non-conductive metal–organic frameworks for high-performance lithium-ion batteries
Ni-mba-Na black fibrous product · Powder · FEI Nova Nano SEM; FEI TecnaiG2F30 HRTEM; before and after cycling SEM in SI
2023 · The rise of 2D conductive metal-organic framework: Cu3(HHTP)2 d-π MOF for integrated battery-supercapacitor hybrids
As-synthesised Cu3(HHTP)2 dark-blue crystalline solid · Powder · Morphology and elemental composition of Cu3(HHTP)2.
2023 · Two Dual-Function Zr/Hf-MOFs as High-Performance Proton Conductors and Amines Impedance Sensors
DUT-67(Hf) microcrystalline powder · Powder · as-synthesised and water-treated DUT-67(Zr/Hf)
2023 · Two Dual-Function Zr/Hf-MOFs as High-Performance Proton Conductors and Amines Impedance Sensors
DUT-67(Zr) microcrystalline powder · Powder · as-synthesised and water-treated DUT-67(Zr/Hf)
2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves
PcM-Cu-nC MOF film series (M = Ni, Cu, H2; n = 10-40 cycles) · Thin Film · Films with different LBL growth cycles on glass and other hydroxylated substrates.
2023 · Ultrasensitive levofloxacin electrochemical biosensor based on semiconducting covalent organic framework/poly-L-cysteine/triangular Ag nanoplates modified glassy carbon electrode
TABQ-CHHO-COF powder · Powder · Morphology analysis of TABQ-CHHO-COF.
2023 · Wavy Two-Dimensional Conjugated Metal-Organic Framework with Metallic Charge Transport
Cu3(HFcHBC)2 polycrystalline film · Thin Film · Films and isolated nanocrystals imaged to determine morphology, lattice and layer spacing.
2022 · 3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan
Co-Ni-MOFs doped-ratio powder series · Powder · SEM characterisation of Co-Ni-MOFs at Co/Ni molar ratios 0.1%, 2%, and 5%.
2022 · 3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan
Co-Ni-MOFs-1% powder · Powder · SEM/TEM morphology and EDS elemental mapping for Co-Ni-MOFs-1%.
2022 · 3D Co-doped Ni-based conductive MOFs modified electrochemical sensor for highly sensitive detection of L-tryptophan
Ni-MOFs powder · Powder · SEM on Sigma 300; TEM images shown in Fig. 1.
2022 · A 2D copper-imidazolate framework without thermal treatment as an efficient ORR electrocatalyst for Zn-air batteries
as-synthesised 2DCIF nanosheet powder · Nanosheet · SEM/TEM of as-prepared nanosheets; HR HAADF-STEM at 200 kV with low beam current
2022 · A 2D copper-imidazolate framework without thermal treatment as an efficient ORR electrocatalyst for Zn-air batteries
2DCIF-modified ITO electrode before/after ORR · Electrode · 2DCIF-modified ITO examined before and after ORR electrochemical analysis
2022 · A Mixed Heterobimetallic Y/Eu-MOF for the Cyanosilylation and Hydroboration of Carbonyls
Y/Eu-MOF crystalline catalyst · Single Crystal · SEM Leo 1430 VP with EDX microanalysis; mapping of bulk Y/Eu-MOF material and one single crystal discussed in main text.
2022 · A Monocrystalline Coordination Polymer with Multiple Redox Centers as a High-Performance Cathode for Lithium-Ion Batteries
as-synthesised CuCA nanosheet powder · Nanosheet · Morphology, nanosheet dimensions, monocrystalline nature, and elemental distribution for as-synthesised CuCA.
2022 · A Novel Electrically Conductive Perylene Diimide-Based MOF-74 Series Featuring Luminescence and Redox Activity
PDI-MOF-74(Zn) VAC film on glass · Thin Film · SEM of PDI-MOF-74(Zn) film grown on glass via VAC
2022 · A Novel Electrically Conductive Perylene Diimide-Based MOF-74 Series Featuring Luminescence and Redox Activity
PDI-MOF-74(Mg) powder · Powder · TEM at 300 kV; SEM at 2 kV; powder morphology and crystallinity
2022 · A Novel Electrically Conductive Perylene Diimide-Based MOF-74 Series Featuring Luminescence and Redox Activity
PDI-MOF-74(Ni) powder · Powder · TEM at 300 kV; SEM at 2 kV; powder morphology and crystallinity
2022 · A Novel Electrically Conductive Perylene Diimide-Based MOF-74 Series Featuring Luminescence and Redox Activity
PDI-MOF-74(Zn) powder · Powder · TEM at 300 kV; SEM at 2 kV; powder morphology and crystallinity
2022 · A novel Sn-based coordination polymer with high-efficiency and ultrafast lithium storage
as-prepared Sn-DHTPA powder · Powder · Hitachi SU8010 FESEM; elemental mapping of Sn, C and O
2022 · A one-dimensional conductive metal-organic framework with extended π-d conjugated nanoribbon layers
DDA-Cu MOF crystals / bulk precipitate · Powder · needle-like bulk crystals
2022 · A one-dimensional conductive metal-organic framework with extended π-d conjugated nanoribbon layers
DDA-Cu MOF film · Thin Film · films grown 12-72 h; 25 nm film for GIWAXS
2022 · A Rationally Designed Iron–Dihydroxybenzoquinone Metal–Organic Framework as Practical Cathode Material for Rechargeable Batteries
Fe2(DHBQ)3 electrode A/default (AM/KB/PTFE = 6:3:1, low loading) · Electrode · XRD of pristine/discharged/recharged and charged-state electrodes over cycles; SEM Fig. S21; dissolution in 1 mL 1 M LiTFSI/DOL-DME for 96 h.
2022 · A Rationally Designed Iron–Dihydroxybenzoquinone Metal–Organic Framework as Practical Cathode Material for Rechargeable Batteries
air-stabilised Fe2(DHBQ)3 powder · Powder · SEM Fig. 1h; HRTEM Fig. S7.
2022 · A stable lanthanum hydroxamate metal-organic framework with radical character and electrical conductivity
La-ONDI-DMA single crystals · Single Crystal · Leo Gemini SEM; Oxford Instruments Model 7426 EDX at 20 kV; KCl and LaB6 standards.
2022 · Adjustable Synthesis of Ni-Based Metal-Organic Framework Membranes and Their Field-Effect Transistor Sensors for Mercury Detection
S4-based Ni3(HITP)2-GA-DNA FET sensor · Electrode · Structural and morphology checks of the S4-based Ni3(HITP)2-GA-DNA sensor after GA and DNA probe modification.
2022 · Adjustable Synthesis of Ni-Based Metal-Organic Framework Membranes and Their Field-Effect Transistor Sensors for Mercury Detection
S1 Ni3(HITP)2 membrane · Thin Film · SEM morphology of S1 membrane on the channel; instrument stated as SU8020 FESEM at 5 kV.
2022 · Adjustable Synthesis of Ni-Based Metal-Organic Framework Membranes and Their Field-Effect Transistor Sensors for Mercury Detection
S4 Ni3(HITP)2 membrane · Thin Film · SEM morphology of optimised S4 membrane on the channel.
2022 · Ag doped Co/Ni bimetallic organic framework for determination of luteolin
Ag-CoNi-MOF nanocomposite powder · Nanosheet · Morphology, Ag nanoparticle distribution, HRTEM lattice spacing and elemental maps of Ag-CoNi-MOF.
2022 · Ag doped Co/Ni bimetallic organic framework for determination of luteolin
CoNi-MOF nanosheets powder · Nanosheet · Morphology of pristine CoNi-MOF nanosheets/microflowers.
2022 · Atomic Ruthenium-Riveted Metal-Organic Framework with Tunable d-Band Modulates Oxygen Redox for Lithium-Oxygen Batteries
Ni-HTP nanowire-array electrode on carbon paper · Electrode · nanowire arrays on carbon fibres; TEM crystallinity/interplanar spacing
2022 · Atomic Ruthenium-Riveted Metal-Organic Framework with Tunable d-Band Modulates Oxygen Redox for Lithium-Oxygen Batteries
NiRu-HTP nanowire-array electrode on carbon paper · Electrode · nanowire arrays on carbon fibres; honeycomb pore imaging perpendicular to c-axis
2022 · Atomic Ruthenium-Riveted Metal-Organic Framework with Tunable d-Band Modulates Oxygen Redox for Lithium-Oxygen Batteries
Ni-HTP nanowire-array electrode on carbon paper · Electrode · discharged cathodes at capacities of 1, 2 and 5 A h g-1
2022 · Atomic Ruthenium-Riveted Metal-Organic Framework with Tunable d-Band Modulates Oxygen Redox for Lithium-Oxygen Batteries
NiRu-HTP nanowire-array electrode on carbon paper · Electrode · discharged cathodes at capacities of 1, 2 and 5 A h g-1
2022 · Bifunctional 3D-MOF-based nanoprobes for electrochemical sensing and nanozyme enhanced with peroxidase mimicking for colorimetric detection of acetaminophen
ZIF-67-C powder · Powder · Morphology imaging of ZIF-67-C, ZIF-67-A, and ZIF-67-H at different magnifications.
2022 · Bimetallic MOFs with tunable morphology: Synthesis and enhanced lithium storage properties
Co-Ni-MOF/Ni-MOF powder series · Powder · Morphology evolution and elemental distribution across the powder series.
2022 · Boosting the Optoelectronic Performance by Regulating Exciton Behaviors in a Porous Semiconductive Metal-Organic Framework
RhB+@TbTATAB guest-loaded crystals · Powder · SEM/EDS on crystals of RhB+@TbTATAB; Cl absence checked.
2022 · Boron-doped cobalt-iron bimetal phosphides nanosheets for enhanced oxygen evolution
Co-MOF · Powder · MIRA3 TESCAN SEM at 15.0 kV; MOF precursor morphology.
2022 · Charge-transfer interface of insulating metal-organic frameworks with metallic conduction
Cu-TCNQ/Cu-BPyDC heterostructured thin film · Thin Film · Layer identification and total film thickness from cross-sectional image.
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Random polycrystalline pristine HKUST-1 SURMOF film on borosilicate glass, ca. 130 nm · Thin Film · Planar morphology of pristine and TCNQ-loaded HKUST-1 films on borosilicate glass after 10 and 40 cycles.
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Preferentially (001)-oriented pristine HKUST-1 SURMOF film, 100 nm · Thin Film · Cross sections of HKUST-1 SURMOF films on silicon substrates for thickness calibration across spray cycles.
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Random polycrystalline pristine HKUST-1 SURMOF film on hydroxyl-terminated SiO2/Si · Thin Film · Pristine and TCNQ-loaded random polycrystalline HKUST-1 films on hydroxyl-terminated SiO2/Si.
2022 · Chemical sensors based on ionically conductive metal-organic frameworks for selective cadaverine detection
IC-CuTHPP thin-film sensor on ITO interdigital electrode · Electrode · SEM image of CuTHPP device cross-section; AFM images of thickness-controlled CuTHPP films.
2022 · Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions
MnHHB dark-blue powder · Powder · TEM with JEM 2100F at 120 kV; SEM images reported in Fig. S8.
2022 · Chemical Vapor Deposition of Edge-on Oriented 2D Conductive Metal-Organic Framework Thin Films
CVD Cu3(C6O6)2 thin film on SiO2/Si · Thin Film · Surface SEM and elemental maps on Cu3(C6O6)2 thin film on SiO2/Si.
2022 · Coarsening-induced hierarchically interconnected porous carbon polyhedrons for stretchable ionogel-based supercapacitors
Cu@C_12 h · Powder · Coarsened Cu nanoparticles and large pore formation after 12 h thermolysis.
2022 · Coarsening-induced hierarchically interconnected porous carbon polyhedrons for stretchable ionogel-based supercapacitors
Cu@C_1 h · Powder · Cu nanoparticle distribution and mesopores after 1 h thermolysis.
2022 · Coarsening-induced hierarchically interconnected porous carbon polyhedrons for stretchable ionogel-based supercapacitors
mMOF · Powder · Particle morphology and size from SEM; monodisperse MOF crystals ca. 2 um.
2022 · Conductive Co-based metal organic framework nanostructures for excellent potassium- and lithium-ion storage: kinetics and mechanism studies
as-synthesised Co-CAT MOF powder · Powder · SEM at 15 kV and TEM at 200 kV per SI; figures assess nanowire morphology, lattice spacing, and elemental distribution.
2022 · Conductive Hybrid Cu-HHTP-TCNQ Metal–Organic Frameworks for Chemiresistive Sensing
Cu-HHTP-TCNQ thin-film reaction-time series · Thin Film · Top and bottom/angled SEM imaging of 60 min Cu-HHTP-TCNQ thin films.
2022 · Conductive metal organic framework for ion-selective membrane-free solid-contact potentiometric Cu2+ sensing
As-synthesised Cu3(HHTP)2 black powder · Powder · SEM/TEM/EDS used to assess morphology and elemental distribution; XRD compared with prior Cu3(HHTP)2 patterns.
2022 · Conductive Metal-Organic Frameworks Bearing M−O4 Active Sites as Highly Active Biomass Valorization Electrocatalysts
Ni-CAT-FTO · Electrode · SEM images of Ni-CAT-FTO after growth.
2022 · Conductive NiCo bimetal-organic framework nanorods with conductivity-enhanced electrochemiluminescence for constructing biosensing platform
Ni-HHTP monometallic MOF control · Powder · SEM and TEM images of Ni-HHTP nanorods.
2022 · Conductive NiCo bimetal-organic framework nanorods with conductivity-enhanced electrochemiluminescence for constructing biosensing platform
NiCo-HHTP nanorods · Powder · SEM and TEM imaging of NiCo-HHTP nanorods.
2022 · Constructing a Redox-Active Cu(I)-Pyridyltriazine Framework for Catalytic Photoreduction of Nitrobenzenes and Carboxylic Cyclization of Alkynol with CO2
As-synthesised Cu(I)-TPT orange rhombus single crystals · Single Crystal · Morphology and Cu/N/C distribution of Cu(I)-TPT.
2022 · Construction of sulfur vacancies enriched hollow zinc cobalt bimetallic sulfides for high-performance supercapacitors
Co3S4 · Powder · TEM images of Co3S4 and SEM comparison with supplementary Fig. S3.
2022 · Construction of sulfur vacancies enriched hollow zinc cobalt bimetallic sulfides for high-performance supercapacitors
Zn0.3Co2.7S4 · Powder · FESEM SUPRA 55 SEM; TEM JEOL JEM-2100 at 200 kV; EDS from ZEISS SUPRA 55 with Oxford X-Max 20.
2022 · Defect Engineering to Tailor Metal Vacancies in 2D Conductive Metal-Organic Frameworks: An Example in Electrochemical Sensing
Cu-BHT film prepared at pH 2 · Thin Film · Morphology and atomic defect imaging for Cu-BHT films; pH 0, 1, and 2 compared.
2022 · Dense Conductive Metal-Organic Frameworks as Robust Electrocatalysts for Biosensing
Comparative pristine cMOF powder series · Powder · Elemental maps of Ni3(HHTP)2, Cu3(HHTP)2, and Cu3(THQ)2.
2022 · Dimensionality Modulates Electrical Conductivity in Compositionally Constant One-, Two-, and Three-Dimensional Frameworks
Ni-1D rods/bricks · Powder · Cryo-HRTEM on Talos Arctica G2 at 200 kV after sonicating powder in isopropanol; SEM on Zeiss Merlin at 3 or 4 kV.
2022 · Dissecting π-conjugated covalent-coupling over conductive MOFs toward efficient two-electron oxygen reduction
Cu-HITP powder · Powder · SEM at 5 kV; TEM at 200 kV; morphology and elemental distribution compared across the three MOFs.
2022 · Dissecting π-conjugated covalent-coupling over conductive MOFs toward efficient two-electron oxygen reduction
Ni-HITP black powder · Powder · SEM at 5 kV; TEM at 200 kV; morphology and elemental distribution compared across the three MOFs.
2022 · Does the Mode of Metal-Organic Framework/Electrode Adhesion Determine Rates for Redox-Hopping-Based Charge Transport within Thin-Film Metal-Organic Frameworks?
EPD-MOF-525 · Thin Film · Cross-sectional and top-view SEM; samples coated with 9 nm OsO4
2022 · Does the Mode of Metal-Organic Framework/Electrode Adhesion Determine Rates for Redox-Hopping-Based Charge Transport within Thin-Film Metal-Organic Frameworks?
ST-MOF-525 · Thin Film · Cross-sectional and top-view SEM; samples coated with 9 nm OsO4
2022 · Dual nanozyme based on ultrathin 2D conductive MOF nanosheets intergraded with gold nanoparticles for electrochemical biosensing of H2O2 in cancer cells
Cu-HHTP-NSs · Nanosheet · Morphology and crystallinity comparison of Cu-HHTP-NSs and Cu-HHTP-bulk.
2022 · Electrical conductivity through π–π stacking in a two-dimensional porous gallium catecholate metal–organic framework
As-made Ga9(HOTP)4 microcrystalline powder · Powder · Dry powders deposited on carbon tape without further modification; Zeiss Ultra Plus FE-SEM operated at 1-6 kV.
2022 · Electrically Conductive Photoluminescent Porphyrin Phosphonate Metal–Organic Frameworks
GTUB3 single crystals / crystal powder · Single Crystal · SEM images of GTUB3 crystals non-uniformly arranged with random orientations; Figure 3A shows 30 kV, x5500 and 2 um scale bar.
2022 · Electrically regulating nonlinear optical limiting of metal-organic framework film
Cu-HHTP[001] film · Thin Film · SEM (JSM6700), TEM (JEM-2010F), AFM (Bruker Dimension ICON) for surface, cross-section, smoothness, nanosheets and lattice spacing.
2022 · Electrocatalytic oxygen evolution reaction at IrOx supported by Ni/Co-ZIF-67: Controlled ratio of metallic Ir and Ir3+ states
Ni/Co-ZIF-67-2 / Ni/Co-ZIF-67 · Nanosheet · EDS spectrum/inset table for Ni/Co-ZIF-67-2 in Figure S3; values read from rendered SI page image.
2022 · Electrocatalytic oxygen evolution reaction at IrOx supported by Ni/Co-ZIF-67: Controlled ratio of metallic Ir and Ir3+ states
ZIF-67 nanosheet powder/control · Nanosheet · EDS spectrum/inset table for ZIF-67 in Figure S3; values read from rendered SI page image.
2022 · Electrocatalytic oxygen evolution reaction at IrOx supported by Ni/Co-ZIF-67: Controlled ratio of metallic Ir and Ir3+ states
Ni/Co-ZIF-67-2 / Ni/Co-ZIF-67 · Nanosheet · FESEM at 15 kV; EDS mapping used for elemental composition and distribution.
2022 · Electrocatalytic oxygen evolution reaction at IrOx supported by Ni/Co-ZIF-67: Controlled ratio of metallic Ir and Ir3+ states
ZIF-67 nanosheet powder/control · Nanosheet · Field-emission SEM at 15 kV with EDS available; morphology comparison for ZIF-67 and Ni/Co-ZIF-67-2.
2022 · Engineering the modulation of the active sites and pores of pristine metal-organic frameworks for high-performance sodium-ion storage
Ni-HHTP-250 · Powder · Morphology of pristine and thermally treated powders; HRTEM lattice distance for Ni-HHTP-250.
2022 · Engineering the modulation of the active sites and pores of pristine metal-organic frameworks for high-performance sodium-ion storage
Ni-HHTP-250 electrode · Electrode · FESEM images after 100 cycles.
2022 · Enhanced VOC adsorption capacity on MOF thin layer with reduced particle size by cryogrinding and microwave method
All MOF powder samples in paper · Powder · SEM on gold-palladium-coated particles; average crystal size determined with ImageJ.
2022 · Enhanced VOC adsorption capacity on MOF thin layer with reduced particle size by cryogrinding and microwave method
All MOF powder samples in paper · Powder · Ten particle-size measurements per MOF sample with average and standard deviation reported in SI Table S2.
2022 · Enhancing the energy storage performances of metal-organic frameworks by controlling microstructure
A-CuHHTP powder · Powder · SEM at 5 kV after Pt sputter coating; TEM at 200 keV with low beam flux.
2022 · Enhancing the energy storage performances of metal-organic frameworks by controlling microstructure
B-CuHHTP powder · Powder · SEM at 5 kV after Pt sputter coating; TEM at 200 keV with low beam flux; FFT/line profile analysis.
2022 · Enhancing the energy storage performances of metal-organic frameworks by controlling microstructure
C-CuHHTP powder · Powder · SEM at 5 kV after Pt sputter coating; TEM not able to examine pore network because agglomerates were thick.
2022 · Epitaxial Self-Assembly of Interfaces of 2D Metal-Organic Frameworks for Electroanalytical Detection of Neurotransmitters
Co3(HHTP)2 {001} oriented film on GCE · Electrode
2022 · Epitaxial Self-Assembly of Interfaces of 2D Metal-Organic Frameworks for Electroanalytical Detection of Neurotransmitters
Co3(HHTP)2 {100} nanorods on GCE · Electrode
2022 · Epitaxial Self-Assembly of Interfaces of 2D Metal-Organic Frameworks for Electroanalytical Detection of Neurotransmitters
Ni3(HHTP)2 {001} oriented film on GCE · Electrode
2022 · Epitaxial Self-Assembly of Interfaces of 2D Metal-Organic Frameworks for Electroanalytical Detection of Neurotransmitters
Ni3(HHTP)2 {100} nanorods on GCE · Electrode
2022 · Fe–O–Zr in MOF for effective photo-Fenton Bisphenol A degradation: Boosting mechanism of electronic transmission
FeUiO-1 · Powder · SEM of UiO-66 and FeUiO-1; EDX elemental maps for FeUiO-1.
2022 · Flexible Smart Wearable Co@C@Carbon Fabric for Efficient Electromagnetic Shielding, Thermal Therapy, and Human Movement Monitoring
CF-1000 · Thin Film · SEM and digital images of CF-1000 morphology and shrinkage.
2022 · Flexible Smart Wearable Co@C@Carbon Fabric for Efficient Electromagnetic Shielding, Thermal Therapy, and Human Movement Monitoring
Co-CCF-1000 · Thin Film · SEM images and Co/C elemental mapping of Co-CCF-1000.
2022 · Flexible Smart Wearable Co@C@Carbon Fabric for Efficient Electromagnetic Shielding, Thermal Therapy, and Human Movement Monitoring
ZIF-67@CF · Thin Film · SEM images of ZIF-67@CF at different magnifications.
2022 · From 2D to 3D: Postsynthetic Pillar Insertion in Electrically Conductive MOF
Cu-THQ-BPY, Cu2+:BPY feed ratio 1:1 · Powder · FE-SEM on JEOL JSM-7401F at 5 kV; compared Cu-THQ and BPY feed-ratio products.
2022 · Hierarchical 3D micro-nanostructures based on in situ deposited bimetallic metal-organic structures on carbon fabric for supercapacitor applications
NZMF powder / pristine bimetallic MOF · Powder · Morphology and elemental distribution of pristine NZMF hollow microspheres.
2022 · Hierarchical 3D micro-nanostructures based on in situ deposited bimetallic metal-organic structures on carbon fabric for supercapacitor applications
in situ NZMF/CF · Electrode · Morphology and elemental distribution of NZMF hollow microspheres coated on carbon fabric.
2022 · High efficient solid-phase microextraction based on a covalent organic framework for determination of trifluralin and chlorpyrifos in water and food samples by GC-CD-IMS
Synthesised PTA/TAPTT COF powder · Powder · FESEM operated on MIRA III; TEM images reported in the Supporting Information.
2022 · High-Entropy Metal-Organic Framework Arrays Boost Oxygen Evolution Electrocatalysis
HE-MOF nanosheet array electrode on nickel foam · Electrode · Morphology and nanosheet structure of as-prepared HE-MOF array on NF.
2022 · High-Hole-Mobility Metal–Organic Framework as Dopant-Free Hole Transport Layer for Perovskite Solar Cells
Ni3(HITP)2 film thickness series · Thin Film · SEM on Hitachi SU8010; AFM on Bruker; Ni3(HITP)2 thickness series on ITO.
2022 · High-Hole-Mobility Metal–Organic Framework as Dopant-Free Hole Transport Layer for Perovskite Solar Cells
Perovskite films deposited on Ni3(HITP)2 thickness series · Thin Film · Perovskite films deposited on Ni3(HITP)2 films of different thicknesses.
2022 · Highly Effective Generation of Singlet Oxygen by an Imidazole-Linked Robust Photosensitizing Covalent Organic Framework
sonicated PyPor-COF nanoparticles · Nanosheet · Sonicated PyPor-COF before/after water dispersibility testing.
2022 · Highly Effective Generation of Singlet Oxygen by an Imidazole-Linked Robust Photosensitizing Covalent Organic Framework
as-synthesized PyPor-COF powder · Powder · SEM on as-synthesized PyPor-COF; HR-STEM on sonicated samples.
2022 · Host-guest molecular interaction promoted urea electrosynthesis over a precisely designed conductive metal-organic framework
Co-PMDA powder · Powder · Morphology of guest-free control from Fig. S2.
2022 · Host-guest molecular interaction promoted urea electrosynthesis over a precisely designed conductive metal-organic framework
Co-PMDA-2-mbIM powder · Powder · SEM/TEM morphology and elemental mapping of the target powder.
2022 · Imparting Functionality and Enhanced Surface Area to a 2D Electrically Conductive MOF via Macrocyclic Linker
Cu-HHTC synthesised at 60 C · Powder · Cu-HHTC samples synthesised at 30, 40, 50 and 60 C; particle size calculated by multiplying short and long particle sides.
2022 · Imparting Functionality and Enhanced Surface Area to a 2D Electrically Conductive MOF via Macrocyclic Linker
Pristine Cu-HHTC synthesised at 50 C for 8 h · Powder · TEM image and HR-TEM along [001] direction; SEM particle size distribution in SI.
2022 · Improved electrical conductivity of Co(ii) and Cu(ii) ladder polymers in the fabrication of photoresponsive Schottky devices
Co-CP brown block-shaped crystals · Single Crystal · Surface morphology of Co-CP displayed in Fig. 5.
2022 · Improved electrical conductivity of Co(ii) and Cu(ii) ladder polymers in the fabrication of photoresponsive Schottky devices
Cu-CP green block-shaped crystals · Single Crystal · Surface morphology of Cu-CP displayed in Fig. 6.
2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor
C1-ZIF-67 powder · Powder · JSM-7401F SEM at 20 kV.
2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor
C2-ZIF-67 powder · Powder · JSM-7401F SEM at 20 kV.
2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor
Carbon-hydrolysate powder · Powder · JSM-7401F SEM at 20 kV.
2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor
Co-MOF (ZIF-67) purple powder · Powder · JSM-7401F SEM at 20 kV.
2022 · In-Plane Oriented Two-Dimensional Conjugated Metal-Organic Framework Films for High-Performance Humidity Sensing
free-standing in-plane oriented HIB-Cu film · Thin Film · FESEM, Carl Zeiss Gemini, 1-3 kV.
2022 · In-Plane Oriented Two-Dimensional Conjugated Metal-Organic Framework Films for High-Performance Humidity Sensing
free-standing in-plane oriented HIB-Cu film · Thin Film · Thickness of HIB-Cu film varied with HAB concentration.
2022 · Iron-Based 2D Conductive Metal-Organic Framework Nanostructure with Enhanced Pseudocapacitance
Fe-HHTP powder · Powder · TEM on Titan Themis GT 300 at 300 kV with dose rate 20-50 e A-2 s-1.
2022 · Large π-Conjugated Metal-Organic Frameworks for Infrared-Light-Driven CO2Reduction
TNP-MOF after 48 h photocatalytic test · Powder · after 48 h photocatalytic test
2022 · Large-Area Synthesis of Ultrathin, Flexible, and Transparent Conductive Metal–Organic Framework Thin Films via a Microfluidic-Based Solution Shearing Process
MASS-PRC Co3(HITP)2 thin film · Thin Film · Co3(HITP)2 thin film made by MASS-PRC; powder pattern obtained by scraping film multiple times.
2022 · Large-Area Synthesis of Ultrathin, Flexible, and Transparent Conductive Metal–Organic Framework Thin Films via a Microfluidic-Based Solution Shearing Process
MASS-PRC Ni3(HITP)2 thin film · Thin Film · Morphology and elemental mapping of MASS-PRC Ni3(HITP)2 thin film.
2022 · Li-TFSI endohedral Metal-Organic frameworks in stable perovskite solar cells for Anti-Deliquescent and restricting ion migration
Li-TFSI@NH2-MIL-101 doped HTL film, 15 mg mL-1 · Thin Film · comparison of conventional Li-TFSI and Li-TFSI@NH2-MIL-101 doped HTL films
2022 · Li-TFSI endohedral Metal-Organic frameworks in stable perovskite solar cells for Anti-Deliquescent and restricting ion migration
Li-TFSI@NH2-MIL-101 powder · Powder · Li-TFSI loaded NH2-MIL-101 powder
2022 · Li-TFSI endohedral Metal-Organic frameworks in stable perovskite solar cells for Anti-Deliquescent and restricting ion migration
Pristine NH2-MIL-101 nanocrystals · Powder · as-prepared pristine MOF nanocrystals
2022 · Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms
as-formulated Cu-MOF · Powder · Morphological characterisation of as-prepared Cu-MOF.
2022 · Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms
as-formulated Cu-Ni MOF · Powder · Morphological characterisation of as-prepared Cu-Ni MOF.
2022 · Metal-Organic Framework Assembled on Oriented Nanofiber Arrays for Field-Effect Transistor and Gas Sensor-Based Applications
oriented PDMS-PCDA/Cu NFAs · Thin Film · PDMS-PCDA/Cu fibre arrays on 1 cm x 1 cm (n++) Si after electrostatic spinning.
2022 · Metal-Organic Framework Assembled on Oriented Nanofiber Arrays for Field-Effect Transistor and Gas Sensor-Based Applications
Cu3(HITP)2 NFA chemiresistor sensor · Electrode · Cu3(HITP)2 fibre membrane SEM image and C/N/Cu elemental maps.
2022 · Metal-Organic Framework Assembled on Oriented Nanofiber Arrays for Field-Effect Transistor and Gas Sensor-Based Applications
Cu3(HITP)2 NFAs on PDMS-PCDA/Cu, 500 r/min · Electrode · SEM images of Au electrode evaporated on Cu3(HITP)2 NFAs of 300, 400 and 500 r/min and corresponding interelectrode fibre arrays.
2022 · Microscopic Insights into Cation-Coupled Electron Hopping Transport in a Metal-Organic Framework
Zr(dcphOH-NDI)@FTO thin-film electrodes · Electrode · SEM morphology and cross-section thickness of Zr(dcphOH-NDI)@FTO; ImageJ used for surface area and film thickness.
2022 · Millimeter-scale semiconductive metal-organic framework single crystal for X-ray imaging
SCU-15 crystals · Single Crystal · Crystals compared at different heating rates and heating times; Figure 2C and Figure S3.
2022 · Millimeter-scale semiconductive metal-organic framework single crystal for X-ray imaging
SCU-15 SC device · Single Crystal · FEI Quanta 200FEG SEM with 30 keV electron beam; single-crystal and pelleted samples compared.
2022 · Morphologies of thienyl based bimetallic metal-organic frameworks controlled by solvents for high specific capacitance supercapacitor
PTA-NC MOF · Powder · PTA-NC MOF comparison sample characterised by XRD (Fig. S1), FT-IR (Fig. S2), SEM (Fig. S3) and TEM (Fig. S4).
2022 · Morphologies of thienyl based bimetallic metal-organic frameworks controlled by solvents for high specific capacitance supercapacitor
E-NCT MOF · Nanosheet · SEM images for D-NCT, M-NCT and E-NCT morphology and size.
2022 · Multi-stimulus semiconductor Cu(i)-I-pyrimidine coordination polymer with thermo- and mechanochromic sensing
CP1 ground powder series · Powder · Philips XL 30 S-FEG; 300 uA electron beam; 10.0 kV; 10^-7 Pa; doped SiO2 surfaces cleaned by sonication and metallised with 10 nm Cr.
2022 · Mutually Noninterfering Flexible Pressure-Temperature Dual-Modal Sensors Based on Conductive Metal-Organic Framework for Electronic Skin
MOF-MSMC-5h composite film/sensor · Thin Film · top-view and cross-sectional morphology of naked MSMC and MOF-MSMC films
2022 · Nanostructured Conductive Metal Organic Frameworks for Sustainable Low Charge Overpotentials in Li–Air Batteries
Li||Li symmetric cell · Unknown · SEM-EDX on Li anode surface after 5th/10th cycle; FEI Quanta 650 ESEM with Oxford AZtec; XPS In 3d after 5th cycle
2022 · Nanostructured Conductive Metal Organic Frameworks for Sustainable Low Charge Overpotentials in Li–Air Batteries
discharged Cu-THQ/GDE cathode · Electrode · Cu-THQ cathode after 10th discharge at 2 A/g; TEM samples sonicated 15 min in acetonitrile and drop-cast on holey carbon coated copper grids
2022 · Ni(II)-Based Coordination Polymer with Pi-Conjugated Organic Linker as Catalyst for Oxygen Evolution Reaction Activity
as-synthesised CP 1 blue needle-shaped crystals · Single Crystal · FEI Nova Nano SEM-450.
2022 · Ni(II)-Based Coordination Polymer with Pi-Conjugated Organic Linker as Catalyst for Oxygen Evolution Reaction Activity
as-synthesised CP 2 blue crystals · Single Crystal · FEI Nova Nano SEM-450.
2022 · NiPd mediated by conductive metal organic frameworks with facilitated electron transfer for assaying of H2O2 released from living cells
Ni3HHTP2 powder · Powder · SEM image of pristine Ni3HHTP2.
2022 · NiPd mediated by conductive metal organic frameworks with facilitated electron transfer for assaying of H2O2 released from living cells
Ni3HHTP2/GC · Electrode · Ni3HHTP2/GC electrochemically scanned in 10 mM PBS (pH 7.4) for 24 h.
2022 · One-step electrochemical synthesis of tremella-like Co-MOFs/carbon nanohorns films for enhanced electrochemical sensing of carbendazim in vegetable and fruit samples
Co-MOFs/GCE pristine MOF control electrode · Electrode · SEM morphology of electrochemically deposited Co-MOFs.
2022 · One-step electrochemical synthesis of tremella-like Co-MOFs/carbon nanohorns films for enhanced electrochemical sensing of carbendazim in vegetable and fruit samples
Co-MOFs/CNHs/GCE composite sensing electrode · Electrode · SEM morphology of Co-MOFs/CNHs after one-step co-deposition.
2022 · One-Step Solvothermal Synthesis of Raspberry-like NiCo-MOF for High-Performance Flexible Supercapacitors for a Wide Operation Temperature Range
NiCo-MOF-3 powder · Powder · Morphology comparison of NiCo-MOF-1/2/3/4 and detailed NiCo-MOF-3 microscopy.
2022 · Operando Elucidation of Electrocatalytic and Redox Mechanisms on a 2D Metal Organic Framework Catalyst for Efficient Electrosynthesis of Hydrogen Peroxide in Neutral Media
Ni-HAB powder · Powder · Nanoscale Ni-HAB powder imaged on carbon tape; 1 kV imaging and 17 kV EDS method reported in SI.
2022 · Oxidative control over the morphology of Cu3(HHTP)2, a 2D conductive metal-organic framework
Cu3(HHTP)2 blocks, 0.3 equiv 2,5-dichloro pre-oxidant · Powder · SEM images and length/diameter distributions; over 250 particles analysed for rods in main text.
2022 · Oxidative control over the morphology of Cu3(HHTP)2, a 2D conductive metal-organic framework
Cu3(HHTP)2 flakes, 0.5 equiv 2,5-dichloro pre-oxidant · Powder · SEM images and length/diameter distributions; over 250 particles analysed for rods in main text.
2022 · Oxidative control over the morphology of Cu3(HHTP)2, a 2D conductive metal-organic framework
Cu3(HHTP)2 rods, 0 equiv pre-oxidant · Powder · SEM images and length/diameter distributions; over 250 particles analysed for rods in main text.
2022 · Pd-Embedded Ti Metal–Organic Framework Nanostructures for Photocatalytic Reductive N-Formylation of Nitroarenes in Water
Pd1.5%/Ti-MOF · Powder · Morphology after Pd incorporation.
2022 · Pd-Embedded Ti Metal–Organic Framework Nanostructures for Photocatalytic Reductive N-Formylation of Nitroarenes in Water
Ti-MOF · Powder · Morphology at 40k and 100k magnification.
2022 · Pd-Embedded Ti Metal–Organic Framework Nanostructures for Photocatalytic Reductive N-Formylation of Nitroarenes in Water
spent Pd1.5%/Ti-MOF after recycling · Powder · Spent Pd1.5%/Ti-MOF after recycling compared with fresh catalyst.
2022 · Phthalocyanine-Based Two-Dimensional Conductive Metal-Organic Framework as Electrochemical Sensor for Highly Sensitive Detection of Nifedipine
CoPc-Cu MOF black powder · Powder · SEM/TEM morphology and EDS elemental analysis of CoPc-Cu MOF.
2022 · Polythiophene hybrid film with zirconium–porphyrin metal–organic framework for improved charge carrier transport and NO2 gas sensing
PCN-222/P3HT blend film series · Thin Film · Morphology and elemental mapping of P3HT films blended with different PCN-222 contents.
2022 · Polythiophene hybrid film with zirconium–porphyrin metal–organic framework for improved charge carrier transport and NO2 gas sensing
activated PCN-222 powder · Powder · PCN-222 particle morphology imaged at low/high magnification and as individual nanocrystal.
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C1)2 black powder · Powder · SEM morphology, EDX elemental maps, and HRTEM/FFT local lattice analysis of powder samples.
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C3)2 black powder · Powder · SEM morphology, EDX elemental maps, and HRTEM/FFT local lattice analysis of powder samples.
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C4)2 black powder · Powder · SEM morphology, EDX elemental maps, and HRTEM/FFT local lattice analysis of powder samples.
2022 · Preparation of Bimetallic Conductive Metal-organic Framework Material Ni/Co-CAT for Electrocatalytic Oxygen Reduction 双金属导电金属有机框架材料 Ni/Co-CAT 的制备及其氧还原催化性能研究
Ni-CAT powder · Powder · High-power SEM; magnification 92000 times.
2022 · Preparation of Bimetallic Conductive Metal-organic Framework Material Ni/Co-CAT for Electrocatalytic Oxygen Reduction 双金属导电金属有机框架材料 Ni/Co-CAT 的制备及其氧还原催化性能研究
Ni-Co-CAT powder · Powder · High-power SEM; magnification 90000 times; EDS elemental mass fraction.
2022 · Probing the electronic and ionic transport in topologically distinct redox-active metal-organic frameworks in aqueous electrolytes
All powder materials: MOF-808, Mn-MOF-808, UiO-66, Mn-UiO-66, CAU-24 and Mn-CAU-24 · Powder · Cross-sectional SEM of Mn-MOF-808, Mn-UiO-66 and Mn-CAU-24 drop-cast thin films.
2022 · Probing the electronic and ionic transport in topologically distinct redox-active metal-organic frameworks in aqueous electrolytes
All powder materials: MOF-808, Mn-MOF-808, UiO-66, Mn-UiO-66, CAU-24 and Mn-CAU-24 · Powder · SEM images of six powders; low-magnification SEM, EDS line scans/maps and TEM in SI.
2022 · Quasi Solid–Liquid Reaction Strategy to In Situ Synthesize the Conductive MOF Film with Ordered Submicron Macropores for Gas Sensing
Cu3(HITP)2 MOF at PS on IDE intermediate · Electrode · 20,000 magnification SEM of pure PS, solid HATP ligand at PS, Cu3(HITP)2 MOF at PS and final TOM-Cu3(HITP)2 film.
2022 · Quasi Solid–Liquid Reaction Strategy to In Situ Synthesize the Conductive MOF Film with Ordered Submicron Macropores for Gas Sensing
IDE loaded with TOM-Cu3(HITP)2 film · Electrode · SEM images at 5000, 10000, 20000 and 50000 magnification; Hitachi Regulus 8100 or Hitachi S4800 at 3 kV.
2022 · Rapid and sensitive detection of PD-L1 exosomes using Cu-TCPP 2D MOF as a SPR sensitizer
Cu-TCPP 2D MOF nanosheets · Nanosheet · Morphology and elemental analysis of synthesized Cu-TCPP 2D MOF nanosheets.
2022 · Redox-Active Ni(II) Nodes Induced Electrochromism in a Two-Dimensional Conductive Metal-Organic Framework
Ni3(HITP)2-362 nm/FTO electrode · Electrode · Field-emission SEM (Hitachi S-4800) used to inspect surface uniformity and cross-section thickness for the film series.
2022 · Self-supporting electrochemical sensors for monitoring of cell-released H2O2 based on metal nanoparticle/MOF nanozymes
As-synthesised 2D Zn-MOF nanosheet powder · Nanosheet · SEM and TEM images of as-synthesised 2D Zn-MOF nanosheets.
2022 · Self-supporting electrochemical sensors for monitoring of cell-released H2O2 based on metal nanoparticle/MOF nanozymes
As-synthesised polyhedral 3D Zn-MOF nanocrystals · Powder · SEM and TEM images of as-synthesised 3D Zn-MOF nanocrystals.
2022 · Sensitive Detection of Alcohol Isomers by Ionically Conductive Metal-Organic Frameworks
Co-TCPP device without mobile metal ions on conductive glass · Electrode · Co-TCPP MOF thin film without mobile metal ions.
2022 · Sensitive Detection of Alcohol Isomers by Ionically Conductive Metal-Organic Frameworks
Co-TCPP IC-MOF capacitive sensor on ITO interdigital electrodes · Electrode · Co-TCPP IC-MOF film deposited on ITO conductive glass/electrodes.
2022 · Sensitive humidity sensors based on ionically conductive metal-organic frameworks for breath monitoring and non-contact sensing
IC-Mg2(dobdc) humidity sensor · Electrode · Surface and cross-section morphology of Mg2(dobdc)-MOF film/device.
2022 · Size-Dependent Properties of Solution-Processable Conductive MOF Nanocrystals
CoTA2 bulk and nanosized series with 1-methylimidazole · Powder · Preliminary CoTA2 bulk and nanoparticle syntheses with varying 1-methylimidazole equivalents.
2022 · Size-Dependent Properties of Solution-Processable Conductive MOF Nanocrystals
Fe(TA)2 nanoparticles made with alternate modulators · Powder · Exploratory Fe(TA)2 syntheses with 5-bromo-1-methylimidazole, 1-benzyl-2-methylimidazole and n-butylamine.
2022 · Size-Dependent Properties of Solution-Processable Conductive MOF Nanocrystals
Fe(TA)2 nanoparticle series synthesised with 1-methylimidazole · Powder · SEM samples drop-cast from DMF onto silicon and dried under N2; >200 particles measured when SEM-resolved. Scherrer analysis from PXRD for all sizes.
2022 · sp-Carbon Incorporated Conductive Metal-Organic Framework as Photocathode for Photoelectrochemical Hydrogen Generation
as-synthesised Cu3HHAE2 powder/hexagonal rods · Powder · SEM images recorded on Zeiss Gemini S4500; Figure 1b and Figure S3.
2022 · Split-cell symmetric supercapacitor performance of bimetallic MOFs yolk-shell hierarchical microstructure
Ni-Zn MOF precipitate / powder · Powder · FE-SEM images at 10 kV and EDX elemental maps of Ni-Zn MOF; SI reports FE-SEM-4800.
2022 · Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices
Cu-CAT nanorods grown on graphite paper · Electrode · SEM images of graphite paper and Cu-CAT nanorods grown on graphite paper.
2022 · Stacked conductive metal–organic framework nanorods for high-performance vacuum electronic devices
Cu-CAT@GP growth-time series · Electrode · SEM images of Cu-CAT grown on graphite paper under the same hydrothermal conditions for 3 h, 5 h and 7 h.
2022 · Supramolecular Host-Guest Assembly Based on Phosphotungstate Nanostructures for Pseudocapacitive and Electrochemical Sensing Applications
Compound 2 · Single Crystal · Characterisation of compounds 1 and 2; exact plots in SI Figures S8-S11.
2022 · Supramolecular Host-Guest Assembly Based on Phosphotungstate Nanostructures for Pseudocapacitive and Electrochemical Sensing Applications
Compound 2 · Single Crystal · Morphology and elemental mapping of compounds 1 and 2.
2022 · Surface Structure Construction of Fibers in a Conductive Metal-Organic Framework/Metal/Cotton Electrode for Flexible Textile Supercapacitors
CPAMOF Cu-MOF/Au/cotton electrode · Electrode · SEM images collected for CT, CP, CPA and CPAMOF.
2022 · Synergistic effect of Co/Ni bimetallic metal–organic nanostructures for enhanced electrochemical energy storage
Co/Ni-MOF-2:1 powder · Powder · Morphology, dense/solid TEM character, and elemental distribution of Co/Ni-MOF-2:1.
2022 · Synergistic effect of Co/Ni bimetallic metal–organic nanostructures for enhanced electrochemical energy storage
Ni-MOF light-green powder · Powder · Morphology and microstructure of as-prepared Ni-MOF.
2022 · Synergistic effect of Co/Ni bimetallic metal–organic nanostructures for enhanced electrochemical energy storage
Co/Ni-MOF-2:1 three-electrode working electrode · Electrode · Characterisation of Co/Ni-MOF-2:1 electrode after 5000 cycles.
2022 · Synthesis and Characterization of Schiff Base Polymers via Metal Coordination and Its Application in Infrared Stealth Coating
D230-PyAL coating/polymer · Thin Film · SU8220 SEM at 10 kV; samples sputter-coated with gold
2022 · Synthesis of Tostadas-Shaped Metal-Organic Frameworks for Remitting Capacity Fading of Li-Ion Batteries
NHM; Tostadas-shaped Ni-HITP assembly · Powder · Morphology of NHP, NHS, and NHM; EDS maps C, N, Ni in NHM.
2022 · Target-triggered hybridization chain reaction for ultrasensitive dual-signal miRNA detection
Calcined N-PCD powder · Powder · SEM/TEM images compared N-PCD morphology after calcination.
2022 · Target-triggered hybridization chain reaction for ultrasensitive dual-signal miRNA detection
Synthesised ZIF-8 powder · Powder · SEM images used to assess ZIF-8 morphology and size.
2022 · The Growth Mechanism of a Conductive MOF Thin Film in Spray-based Layer-by-layer Liquid Phase Epitaxy
Cu3(HHTP)2-xC spray LBL-LPE thin-film growth-cycle series, x = 1-60 · Thin Film · Zeiss Sigma 300 field-emission SEM at 3 kV; cross-sectional views for x = 10, 20, 30 and 50 in SI.
2022 · Thousand-fold increase in O2electroreduction rates with conductive MOFs
0.8 mg cm^-2 Ni3(HITP)2 + 10 wt% PTFE GDE · Electrode · SEM cross-section and plan-view imaging of 0.8 mg cm^-2 Ni3(HITP)2 + 10% PTFE GDE.
2022 · Thousand-fold increase in O2electroreduction rates with conductive MOFs
As-synthesised Ni3(HITP)2 powder · Powder · Powder samples dispersed on carbon tape; Zeiss Merlin HR-SEM with InLens detector, 2-4 kV.
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
As-electrodeposited Cu3(HHTP)2 thin film on Au/SiO2 · Thin Film · Top-view and cross-sectional SEM of as-electrodeposited Cu3(HHTP)2.
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
CuHHTP-PAA-40 PAA-transferred Cu3(HHTP)2 film · Thin Film · PAA-transferred Cu3(HHTP)2 film visual and cross-sectional characterisation.
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
CuHHTP-70 PMMA-transferred Cu3(HHTP)2 film · Thin Film · SEM images of PMMA-transferred Cu3(HHTP)2 films dried at 40 C and 70 C.
2022 · Ultrafast transformation of metal-organic frameworks into advanced oxygen evolution electrocatalysts with good universality and scalability
Fe-CoNi MOFs on Ni foam, 0.10 M Fe(NO3)3 · Electrode · Morphology, lattice spacing and elemental mapping of CoNi MOFs and Fe-CoNi MOFs.
2022 · Ultrathin Self-Assembly Two-Dimensional Metal-Organic Framework Films as Hole Transport Layers in Ideal-Bandgap Perovskite Solar Cells
FA0.83Cs0.17Sn0.35Pb0.65I2.9Br0.1 perovskite on Cu3(HHTT)2 · Thin Film · Pb-Sn perovskite films on Cu3(HHTT)2 and NiOx HTLs compared under the same processing conditions.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu0.3BTC-100-8 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-100-14 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-100-20 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-100-3 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-100-5 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-100-8 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-120-14 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-120-20 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-120-3 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-120-5 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-120-8 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-80-14 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-80-20 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-80-3 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-80-5 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu1BTC-80-8 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Understanding Solvothermal Growth of Metal-Organic Framework Colloids for CO2Capture Applications
1Cu3BTC-100-8 · Powder · SEM images acquired at 10 kV; SI Table S1 summarises Feret diameters based on SEM image analyses with particle count greater than 20.
2022 · Wet-Adhesive On-Skin Sensors Based on Metal–Organic Frameworks for Wireless Monitoring of Metabolites in Sweat
Ni3HHTP2 film working electrode on Au/BNC · Electrode · SEM/TEM used to image BNC membrane and Ni3HHTP2 film electrode; JEOL JSM-7600 SEM and JEOL 2010 HR/UHR TEM listed in SI.
2021 · 2D/2D NiCo-MOFs/GO hybrid nanosheets for high-performance asymmetrical supercapacitor
NCMG-10 · Nanosheet · SEM/TEM morphology and elemental mapping; instruments specified in SI as SEM SU5000 and TEM JEOL ARM 200F.
2021 · A comparative study of honeycomb-like 2D π-conjugated metal-organic framework chemiresistors: conductivity and channels
Cu-HHTP nanorods (NRs) · Powder · Morphology and structure observed by SEM (Hitachi SU5000) and TEM (JEOL JEM-2200FS(HR)).
2021 · A multifunctional n-doped cu–mofs (N–cu–mof) nanomaterial-driven electrochemical aptasensor for sensitive detection of deoxynivalenol
As-prepared N-Cu-MOF nanoparticles · Powder · Morphology and element distribution of as-prepared N-Cu-MOF nanoparticles.
2021 · An Electrically Conducting Three-Dimensional Iron–Catecholate Porous Framework
Fe-HHTP-MOF black microcrystalline powder · Powder · SEM at 2 kV after carbon coating; TEM at 300 kV after powder deposition on copper grid.
2021 · Charge-Transfer-Induced Electrical Conductivity in a Tetrathiafulvalene-Based Metal-Organic Framework
activated Zn2TTFTB · Powder · Top-view powder micrographs on JEOL JSM-7500F FE-SEM with EDS system; SE images at 1 kV; samples not metal-coated.
2021 · Cluster-Bridging-Coordinated Bimetallic Metal−Organic Framework as High-Performance Anode Material for Lithium-Ion Storage
As-synthesised Co4-Ir MOF crystal/powder · Powder · FEI Nova NanoSEM 450 at 5.0 kV with Bruker Quantax-200 EDX apparatus.
2021 · Conductive Metal-Organic Framework for High Energy Sodium-Ion Hybrid Capacitors
as-prepared Ni-MOF powder · Powder · As-prepared Ni-MOF particle and edge morphology.
2021 · Conductive metal-organic frameworks promoting polysulfides transformation in lithium-sulfur batteries
Ni-HHTP@CP electrode · Electrode · SEM of Ni-HHTP coated CP; TEM and elemental mapping of Ni-HHTP particles/nanoplates.
2021 · Conductive Stimuli-Responsive Coordination Network Linked with Bismuth for Chemiresistive Gas Sensing
Bi(HHTP) powder from Procedure 1, 2:1 metal:ligand · Powder · SEM rectangular crystallites; TEM after 1 mg Bi(HHTP) sonicated in acetone 16 h and dropcasted onto carbon grid; SAED d-spacing analysis
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
Solution-sheared HKUST-1 thin film, 1 cycle · Thin Film · 1st solution-sheared HKUST-1 thin film; Cu and Si maps compared.
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
Solution-sheared HKUST-1 thin film, 4 cycles · Thin Film · 4th solution-sheared HKUST-1 thin film; Cu and Si maps compared.
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
Solution-sheared HKUST-1 thin film, 4 cycles · Thin Film · SEM comparison of 1st, 2nd, and 4th solution-shearing cycles.
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
Solution-sheared HKUST-1 thin film, 4 cycles · Thin Film · Intergrown HKUST-1 crystals after multiple solution-shearing cycles.
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
TCNQ@HKUST-1 thin film, 168 h TCNQ soak · Thin Film · SEM comparison of pristine HKUST-1, 24 h TCNQ@HKUST-1, and 168 h TCNQ@HKUST-1.
2021 · Conductive, Large-Area, and Continuous 7,7,8,8-Tetracyanoquinodimethane@HKUST-1 Thin Films Fabricated Using Solution Shearing
Thermally activated TCNQ@HKUST-1 thin films, 72 and 168 h TCNQ soak · Thin Film · Thermally activated HKUST-1 thin films soaked in TCNQ solution for 72 h and 168 h.
2021 · Coordination environment dependent selectivity of single-site-Cu enriched crystalline porous catalysts in CO2 reduction to CH4
Cu-HHTP modified GDL-carbon paper electrode · Electrode · Fresh and tested Cu-HHTP, Cu-TTCOF and Cu-PPCOF modified GDL-carbon paper electrodes
2021 · Coordination environment dependent selectivity of single-site-Cu enriched crystalline porous catalysts in CO2 reduction to CH4
as-prepared Cu-HHTP crystals/powder · Powder · As-prepared Cu-HHTP, Cu-TTCOF and Cu-PPCOF compared with simulated XRD patterns
2021 · Coordination environment dependent selectivity of single-site-Cu enriched crystalline porous catalysts in CO2 reduction to CH4
as-synthesised Cu-DBC powder/nanorods · Powder · SEM, TEM and STEM-EDS on as-prepared Cu-DBC nanorods
2021 · Coordination environment dependent selectivity of single-site-Cu enriched crystalline porous catalysts in CO2 reduction to CH4
Cu-DBC modified GDL-carbon paper electrode · Electrode · Fresh and tested Cu-DBC modified GDL-carbon paper electrodes after electrolysis
2021 · Cu-Based Conductive MOF Grown in situ on Cu Foam as a Highly Selective and Stable Non-Enzymatic Glucose Sensor
Cu-MOF/CF electrode · Electrode · SEM/EDX on Cu-MOF/CF; TEM on a sample obtained by sonicating Cu-MOF/CF.
2021 · Effective visible-light CO2 photoreduction over (metallo)porphyrin-based metal–organic frameworks to achieve useful hydrocarbons
PCN-222(Fe) · Powder · SEM images for PCN-222(Fe), PCN-222(Co), PCN-222(Ni), and PCN-222(Cu) obtained on Philips XL-30ESEM with X-ray energy dispersive detector.
2021 · Electrically Conductive Metal–Organic Framework Thin Film-Based On-Chip Micro-Biosensor: A Platform to Unravel Surface Morphology-Dependent Biosensing
Pristine Cu-BHT thin film · Thin Film · AFM images of up-side and bottom-side surfaces; SEM images in SI corroborate surface morphology.
2021 · Electrically Conductive Metal–Organic Framework Thin Film-Based On-Chip Micro-Biosensor: A Platform to Unravel Surface Morphology-Dependent Biosensing
BS-Cu-BHT film on on-chip electrode · Electrode · BS-Cu-BHT after H2O2 detection examined by TEM, SEM, and XPS; sensor relative response measured for two weeks.
2021 · Electrochemical Synthesis of Large Area Two-Dimensional Metal–Organic Framework Films on Copper Anodes
As-grown Cu3(HHTP)2 MOF film on single-crystal Cu(100) anode · Thin Film · Large-area Cu foil film, optical image and SEM image; Cu passing-rate and reaction-rate morphology in SI.
2021 · Electron-Conductive Metal-Organic Framework, Fe(dhbq)(dhbq = 2,5-Dihydroxy-1,4-benzoquinone): Coexistence of Microporosity and Solid-State Redox Activity
Anhydrous Fe(dhbq) powder · Powder · SEM images of hydrated and anhydrous Fe materials
2021 · Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors
TCNQ@Cu3(BTC)2 thin film on Cu foil · Thin Film · TCNQ@Cu3(BTC)2 thin film morphology and thickness; doped-film morphology compared with pristine by supporting figures.
2021 · Enhancing Electrical Conductivity of Semiconducting MOFs via Defect Healing
HAB-treated Co3(HAB)2 · Pellet · Particle size before and after post-treatment for Co3(HAB)2.
2021 · Enhancing Electrical Conductivity of Semiconducting MOFs via Defect Healing
TATHB-treated Cu3(TATHB)2 · Pellet · Particle size before and after post-treatment for Cu3(TATHB)2.
2021 · Enhancing One-Dimensional Charge Transport in Metal-organic Framework Hexagonal Nanorods for Electrocatalytic Oxygen Evolution
Ni-HXR hexagonal nanorods · Powder · SEM morphology characterisation of Ni-HXR.
2021 · Enhancing One-Dimensional Charge Transport in Metal-organic Framework Hexagonal Nanorods for Electrocatalytic Oxygen Evolution
NiFe-HXR hexagonal nanorods · Powder · SEM morphology characterisation of Ni-HXR and NiFe-HXR.
2021 · Enhancing One-Dimensional Charge Transport in Metal-organic Framework Hexagonal Nanorods for Electrocatalytic Oxygen Evolution
NiFe-HXR hexagonal nanorods · Powder · Post-stability SEM morphology.
2021 · Facet Engineering in Ultrathin Two-Dimensional NiFe Metal-Organic Frameworks by Coordination Modulation for Enhanced Electrocatalytic Water Oxidation
NiFe-MOF NSs · Nanosheet · SEM/HRTEM/AFM morphology and thickness characterisation of NiFe-MOF NSs
2021 · Facile design of highly effective Fe-modified bimetallic Fex–Ni1−x-MOFs catalysts with rodlike structures for low-temperature NO reduction by CO
Fe0.33-Ni0.67-MOFs · Powder · SEM morphology of best bimetallic Fe0.33-Ni0.67-MOF sample.
2021 · Facile design of highly effective Fe-modified bimetallic Fex–Ni1−x-MOFs catalysts with rodlike structures for low-temperature NO reduction by CO
Ni-MOFs · Powder · SEM morphology of rodlike Ni-MOF sample.
2021 · Facile one-pot synthesis of Co coordination polymer spheres doped macroporous carbon and its application for electrocatalytic oxidation of glucose
Co CPSs/MPC-2 · Powder · SEM images of Co CPSs, MPC and Co CPSs/MPC.
2021 · Facile synthesis of Ni-, Co-, Cu-metal organic frameworks electrocatalyst boosting for hydrogen evolution reaction
As-prepared Co-BTC crystals/powder · Powder · SEM/TEM images used to determine Co-BTC rod morphology and rod width.
2021 · Facile synthesis of Ni-, Co-, Cu-metal organic frameworks electrocatalyst boosting for hydrogen evolution reaction
As-prepared Cu-BTC blue crystals/powder · Powder · SEM/TEM images used to determine Cu-BTC rhombic octahedral morphology and nanoscale particle size.
2021 · Facile synthesis of Ni-, Co-, Cu-metal organic frameworks electrocatalyst boosting for hydrogen evolution reaction
As-prepared Ni-BTC precipitate/powder · Powder · SEM/TEM images used to determine Ni-BTC spherical morphology and size.
2021 · Ferrocene-functionalized Ni(II)-based metal-organic framework as electrochemical sensing interface for ratiometric analysis of Cu2+, Pb2+ and Cd2+
Fc-NH2-Ni-MOF powder · Powder · JSM-7500F SEM; morphology comparison in Fig. 1b.
2021 · Ferrocene-functionalized Ni(II)-based metal-organic framework as electrochemical sensing interface for ratiometric analysis of Cu2+, Pb2+ and Cd2+
NH2-Ni-MOF powder · Powder · JSM-7500F scanning electron microscopy; morphology comparison in Fig. 1a.
2021 · From n- To p-Type Material: Effect of Metal Ion on Charge Transport in Metal-Organic Materials
a-Pt-HITP powder · Powder · FEI XL30s SEM at 10 kV; samples coated with 3 nm Au to avoid charging.
2021 · High-performance field-effect transistor glucose biosensors based on bimetallic Ni/Cu metal-organic frameworks
Ni/Cu-MOFs (7:1)-FET · Electrode · SEM images of Ni-MOFs, Cu-MOFs, Ni/Cu-MOFs (7:1) and GA-Ni/Cu-MOFs; TEM and cross-section SEM for Ni/Cu-MOFs.
2021 · Highly Selective and Sensitive Detection of Volatile Sulfur Compounds by Ionically Conductive Metal-Organic Frameworks
Cu-TCPP IC-MOF thin-film sensor on ITO interdigital electrodes · Electrode · Surface and cross-section SEM of Cu-TCPP IC-MOF thin-film sensor
2021 · Immobilizing Redox-Active Tricycloquinazoline into a 2D Conductive Metal–Organic Framework for Lithium Storage
Pristine Cu-HHTQ black powder · Powder · SEM morphology; EDS mapping for C, N, O, and Cu.
2021 · Interfacial Synthesis of Layer-Oriented 2D Conjugated Metal-Organic Framework Films toward Directional Charge Transport
Cu2[PcCu-O8] edge-on MOF film · Thin Film · Films deposited on Si substrate for SEM, copper grids for TEM, 300 nm SiO2/Si for OM/AFM
2021 · Interfacial Synthesis of Layer-Oriented 2D Conjugated Metal-Organic Framework Films toward Directional Charge Transport
Cu2[PcCu-O8] edge-on MOF film · Thin Film · FTIR on copper foil; XPS AXIS Ultra DLD calibrated to C1s 284.6 eV; UV-vis on 3 x 3 cm quartz wafer
2021 · Large Single Crystals of Two-Dimensional π-Conjugated Metal-Organic Frameworks via Biphasic Solution-Solid Growth
Solution-solid-grown Co-CAT-1 single crystal · Single Crystal · Single Co-CAT-1 crystal grown by solution-solid route; EDS mapping and FTIR spectrum compared with powder.
2021 · Large Single Crystals of Two-Dimensional π-Conjugated Metal-Organic Frameworks via Biphasic Solution-Solid Growth
Ni-CAT-1 grown from drop-cast HHTP control film · Thin Film · Drop-cast HHTP, water-DMF cosolvent, and microsphere-gap controls imaged to test growth mechanism.
2021 · Large Single Crystals of Two-Dimensional π-Conjugated Metal-Organic Frameworks via Biphasic Solution-Solid Growth
Solution-solid-grown Ni-CAT-1 single-crystal plates on Si/SiO2 · Single Crystal · Reaction time varied under typical growth conditions to assess crystal growth and defect correction.
2021 · Large Single Crystals of Two-Dimensional π-Conjugated Metal-Organic Frameworks via Biphasic Solution-Solid Growth
Solution-solid-grown Ni-CAT-1 single-crystal plates on Si/SiO2 · Single Crystal · Morphology followed with growth time and quantified by crystal-size yield bins under typical growth conditions.
2021 · Large-area synthesis of nanoscopic catalyst-decorated conductive MOF film using microfluidic-based solution shearing
Pt@Cu3(HHTP)2 thin film, 100 uL/min Pt precursor · Thin Film · Film morphology, crystallite size, roughness and AFM thickness profiling
2021 · Layer-by-layer assembled dual-ligand conductive MOF nano-films with modulated chemiresistive sensitivity and selectivity
x mol% HITP doped Cu-HHTP-10C nanofilm series · Thin Film · AFM images and thickness/roughness plots for 0.1, 0.5, 1.0, 5.0 and 10.0 mol% HITP doped films; SEM images for the same dopant levels plus 1.0 mol% low magnification.
2021 · Linker Defects Triggering Boosted Oxygen Reduction Activity of Co/Zn-ZIF Nanosheet Arrays for Rechargeable Zn–Air batteries
D-ZIF linker-deficient nanosheet array on Ni foam · Electrode · Morphology and elemental distribution after 200 C air treatment.
2021 · Linker Defects Triggering Boosted Oxygen Reduction Activity of Co/Zn-ZIF Nanosheet Arrays for Rechargeable Zn–Air batteries
ZIF nanosheet array on Ni foam · Electrode · Surface morphology of as-synthesised ZIF nanosheet arrays on Ni foam.
2021 · Macrocycle-Based Metal-Organic Frameworks with NO2-Driven On/Off Switch of Conductivity
MOF A-covered screen-printed gold electrode sheet · Electrode · SEM image of MOF A thin film and enlarged selected region; film thickness labelled in Figure S17.
2021 · Macrocycle-Based Metal-Organic Frameworks with NO2-Driven On/Off Switch of Conductivity
As-grown red MOF A single crystals/powder · Single Crystal · SEM mapping/EDS/XPS used to confirm elemental composition of MOF A and XPS of A-NO2.
2021 · Metal-organic framework transistors for dopamine sensing
15-cycle Cu3(HHTP)2 film on glass · Thin Film · Top-view SEM and AFM of 15-cycle Cu3(HHTP)2 film on glass and SEM check on Au electrode.
2021 · Mimicking the Electron Transport Chain and Active Site of [FeFe] Hydrogenases in One Metal-Organic Framework: Factors That Influence Charge Transport
PCN-700_NDI_FeFe powder · Powder · Zeiss LEO 1530 Schottky FEG SEM; InLens and SE2 detectors; acceleration voltage 3 or 4 kV.
2021 · Missing-Linker 2D Conductive Metal Organic Frameworks for Rapid Gas Detection
aNi-HAB chemiresistive device · Electrode · As-prepared aNi-HAB film deposited between gold electrodes; samples on carbon tapes/glue for general SEM.
2021 · MOF Nanosheet Reconstructed Two-Dimensional Bionic Nanochannel for Protonic Field-Effect Transistors
Cu-TCPP thin-film H+-FET device · Electrode · Cu-TCPP H+-FET device with Pd source/drain electrodes on SiO2/Si+
2021 · MOF Nanosheet Reconstructed Two-Dimensional Bionic Nanochannel for Protonic Field-Effect Transistors
Cu-TCPP thin film with 10 layer-by-layer deposition cycles · Thin Film · Cu-TCPP thin film after 10 layer-by-layer deposition cycles
2021 · MOF Nanosheet Reconstructed Two-Dimensional Bionic Nanochannel for Protonic Field-Effect Transistors
Cu-TCPP thin film with 10 layer-by-layer deposition cycles · Thin Film · Cu-TCPP thin film immersed in water for 40 days
2021 · MOF-74(M) Films Obtained through Vapor-Assisted Conversion - Impact on Crystal Orientation and Optical Properties
MOF-74(Co) thin film on gold · Thin Film · MOF-74(Co) film on gold grown from CoCl2.6H2O/DMF-H2O route.
2021 · MOF-74(M) Films Obtained through Vapor-Assisted Conversion - Impact on Crystal Orientation and Optical Properties
MOF-74(Mg) thin film on gold, oriented · Thin Film · Oriented MOF-74(Mg) film on gold.
2021 · MOF-74(M) Films Obtained through Vapor-Assisted Conversion - Impact on Crystal Orientation and Optical Properties
MOF-74(Ni) thin film on glass · Thin Film · MOF-74(Ni) film on glass.
2021 · MOF-74(M) Films Obtained through Vapor-Assisted Conversion - Impact on Crystal Orientation and Optical Properties
MOF-74(Zn) thin film on gold · Thin Film · MOF-74(Zn) films on gold, glass and silicon; AFM 5 um x 5 um and 1 um x 1 um scans in SI.
2021 · NH2-UiO-66 Metal-Organic Framework Nanoparticles for Hydroxide Ion Conductive Photoswitches
NH2-UiO-66-10 · Powder · SEM images of NH2-UiO-66-10 and NH2-UiO-66-50 powders.
2021 · Oriented Growth of In-Oxo Chain Based Metal-Porphyrin Framework Thin Film for High-Sensitive Photodetector
In-TCPP SURMOF, 15 LPE cycles · Thin Film · Surface SEM, cross-sectional SEM and AFM roughness analysis for oriented films; thickness varied by LPE cycles.
2021 · Oriented growth of semiconducting TCNQ@Cu3(BTC)2MOF on Cu(OH)2: crystallographic orientation and pattern formation toward semiconducting thin-film devices
Oriented Cu3(BTC)2 photolithographic patterns · Thin Film · Photolithographically patterned film on Si; SEM/photo images and XRD of oriented Cu3(BTC)2 patterns.
2021 · Oriented growth of semiconducting TCNQ@Cu3(BTC)2MOF on Cu(OH)2: crystallographic orientation and pattern formation toward semiconducting thin-film devices
Three-dimensionally oriented Cu3(BTC)2 thin film · Thin Film · Morphology and thickness of oriented Cu3(BTC)2 thin film on Cu(OH)2 nanobelts.
2021 · Oriented growth of semiconducting TCNQ@Cu3(BTC)2MOF on Cu(OH)2: crystallographic orientation and pattern formation toward semiconducting thin-film devices
Oriented TCNQ@Cu3(BTC)2 film measured parallel to {111} · Thin Film · Oriented TCNQ@Cu3(BTC)2 thin film with Pt electrodes; surface particulates observed after TCNQ loading.
2021 · Processable UiO-66 Metal-Organic Framework Fluid Gel and Electrical Conductivity of Its Nanofilm with Sub-100 nm Thickness
MOF-801 thin film · Thin Film · MOF-801 fluid gel/film characterised after applying UiO-66 spin-coating parameters.
2021 · Processable UiO-66 Metal-Organic Framework Fluid Gel and Electrical Conductivity of Its Nanofilm with Sub-100 nm Thickness
MOF-808 thin film · Thin Film · MOF-808 fluid gel/film characterised after applying UiO-66 spin-coating parameters.
2021 · Processable UiO-66 Metal-Organic Framework Fluid Gel and Electrical Conductivity of Its Nanofilm with Sub-100 nm Thickness
UiO-66 fluid gel · Unknown · SEM samples sputtered with Pt for 60 s; TEM samples dispersed in ethanol and drop-cast onto carbon-film copper grids.
2021 · Processable UiO-66 Metal-Organic Framework Fluid Gel and Electrical Conductivity of Its Nanofilm with Sub-100 nm Thickness
UiO-66 nanofilm thickness series · Thin Film · Films prepared from UiO-66 fluid gel in DI water at 0.025-0.500 g mL^-1 and spin speeds 1000-5000 rpm for 60 s.
2021 · Quinone-Based Conducting Three-Dimensional Metal-Organic Framework as a Cathode Material for Lithium-Ion Batteries
as-prepared (NBu4)2Fe2(DHBQ)3 powder/solid · Powder · SEM imaging used to determine particle morphology and hollow surface features.
2021 · Self-Nanocavity-Confined Halogen Anions Boosting the High Selectivity of the Two-Electron Oxygen Reduction Pathway over Ni-Based MOFs
Ni MOF catalyst · Powder · SEM and TEM images for Ni MOF and F/Cl/Br/I-Ni MOF catalysts.
2021 · Si nanoparticles confined within a conductive 2D porous Cu-based metal–organic framework (Cu3(HITP)2) as potential anodes for high-capacity Li-ion batteries
Si@Cu3(HITP)2-5 electrode · Electrode · Pure Si and Si@Cu3(HITP)2-5 electrodes before and after 1000 cycles at 1C.
2021 · Si nanoparticles confined within a conductive 2D porous Cu-based metal–organic framework (Cu3(HITP)2) as potential anodes for high-capacity Li-ion batteries
pure Cu3(HITP)2 electrode · Electrode · Cu3(HITP)2 electrode before and after cycling at 200 mAh g-1.
2021 · Si nanoparticles confined within a conductive 2D porous Cu-based metal–organic framework (Cu3(HITP)2) as potential anodes for high-capacity Li-ion batteries
Si@Cu3(HITP)2-5 · Powder · High- and low-resolution SEM of pure Si, pure Cu-MOF, and Si@Cu3(HITP)2-5/10/15.
2021 · Simultaneous defect passivation and hole mobility enhancement of perovskite solar cells by incorporating anionic metal-organic framework into hole transport materials
HTM-FJU-17 DFL film · Thin Film · Morphology of HTM-FJU-17 DFL film.
2021 · Soft Electrochemical Actuators with a Two-Dimensional Conductive Metal-Organic Framework Nanowire Array
functionalised carbon nanofiber film · Thin Film · CNF film morphology observed by FE-SEM; optical images verify flexible film.
2021 · Soft Electrochemical Actuators with a Two-Dimensional Conductive Metal-Organic Framework Nanowire Array
core-shell Ni-CAT NWAs/CNF electrode · Electrode · Morphology and elemental distribution of core-shell Ni-CAT NWAs/CNF.
2021 · Solar-driven ionic power generation: Via a film of nanocellulose @ conductive metal-organic framework
Freestanding CCM film · Thin Film · Morphology of CCM hybrid nanofibre and cross-section of freestanding film.
2021 · Spindle-like Ni3(HITP)2 MOFs: Synthesis and Li+ storage mechanism
Ni3(HITP)2 electrode on copper foil · Electrode · Film electrodes on Cu foil before and after charge were characterised by XRD; SEM before charge and after 10 charge/discharge cycles.
2021 · Spindle-like Ni3(HITP)2 MOFs: Synthesis and Li+ storage mechanism
as-prepared Ni3(HITP)2 MOF powder · Powder · SEM image and EDS element mapping of as-prepared Ni3(HITP)2 MOFs.
2021 · Stabilization of NASICON-Type Electrolyte against Li Anode via an Ionic Conductive MOF-Incorporated Adhesive Interlayer
sintered LAGP pellet · Pellet · surface morphology of sintered LAGP pellet
2021 · Stabilization of NASICON-Type Electrolyte against Li Anode via an Ionic Conductive MOF-Incorporated Adhesive Interlayer
ZCPL-LAGP electrolyte · Pellet · ZCPL-coated LAGP surface and cross-section
2021 · Structural and electronic modulation of conductive MOFs for efficient oxygen evolution reaction electrocatalysis
NiPc-Fe powder control · Powder · SEM and TEM morphology of NiPc-Fe control.
2021 · Structural and electronic modulation of conductive MOFs for efficient oxygen evolution reaction electrocatalysis
NiPc-Ni powder control · Powder · SEM and TEM images of NiPc-Ni control.
2021 · Structural and electronic modulation of conductive MOFs for efficient oxygen evolution reaction electrocatalysis
NiPc-NiFex powder series · Powder · SEM/TEM used to examine morphology of NiPc-NiFe0.05, NiPc-NiFe0.09 and NiPc-NiFe0.20; EDX mapping for NiPc-NiFe0.09.
2021 · Sulfur vacancies enriched Nickel-Cobalt sulfides hollow spheres with high performance for All-Solid-State hybrid supercapacitor
Ni-Co CP spheres · Powder · Precursor sphere morphology and coordination assessed in main text using SI figures.
2021 · Sulfur vacancies enriched Nickel-Cobalt sulfides hollow spheres with high performance for All-Solid-State hybrid supercapacitor
r-NiCo2S4-6 HSs · Powder · Morphology, shell thickness, lattice planes and elemental distribution of reduced sulfur-vacancy-rich hollow spheres.
2021 · Sulfur vacancies enriched Nickel-Cobalt sulfides hollow spheres with high performance for All-Solid-State hybrid supercapacitor
NiCo2S4-X HSs intermediates (X = 0.5, 1, 2, 4 h) · Powder · NiCo2S4 hollow sphere evolution at 160 C for 0.5, 1, 2, 4 and 6 h.
2021 · Synthesis of a novel double-ligand nickel conductive metal–organic framework material and its electrochemical characterization for supercapacitors
Ni-MOF green powder · Powder · SEM/TEM morphology and EDX/mapping for element distribution.
2021 · Synthesis, identification and application of metal organic framework for removal of industrial cationic dyes
White ZIF-7 crystals · Powder · SEM image of ZIF-7 morphology.
2021 · Truxone-Based Conductive Metal-Organic Frameworks for the Oxygen Reductive Reaction
truxone-Cu MOF powder/nanosheets · Powder · TEM on carbon-coated copper grid after N2 drying at 200 keV; SEM suspension on silicon wafer with conducting resin.
2021 · Truxone-Based Conductive Metal-Organic Frameworks for the Oxygen Reductive Reaction
truxone-Cu MOF powder/nanosheets · Powder · XPS on silicon substrate with Thermo Scientific ESCALAB 250Xi; EDX with Bruker probe on Apreo S LoVac SEM.
2021 · Two-dimensional conductive metal-organic frameworks with dual metal sites toward the electrochemical oxygen evolution reaction
NiPc-Ni powder/nanosheets · Nanosheet · SEM on HITACHI SU8000; TEM/HRTEM/EDX on JEOL JEM-2200FS.
2021 · Two-dimensional d-π conjugated metal-organic framework based on hexahydroxytrinaphthylene
as-synthesised Cu3(HHTN)2 dark brown powder · Powder · SEM on carbon tape/aluminium plate; TEM from acetone suspension drop-cast on copper grid; EDX on corresponding areas.
2021 · Uniaxially Oriented Electrically Conductive Metal-Organic Framework Nanosheets Assembled at Air/Liquid Interfaces
HITP-Ni-NS on Si at pi = 10 mN m-1 · Thin Film · HITP-Ni-NS transferred onto Si at pi = 10 mN m-1.
2021 · Uniaxially Oriented Electrically Conductive Metal-Organic Framework Nanosheets Assembled at Air/Liquid Interfaces
HATP-water-NS control · Nanosheet · HATP-water-NS assembled on pure water and transferred onto Si.
2021 · Why conductivity is not always king-physical properties governing the capacitance of 2D metal-organic framework-based EDLC supercapacitor electrodes: A Ni3(HITP)2case study
HITP_A Ni3(HITP)2 powder batch · Powder · Dry powder morphology; stable under electron-beam irradiation.
2021 · Why conductivity is not always king-physical properties governing the capacitance of 2D metal-organic framework-based EDLC supercapacitor electrodes: A Ni3(HITP)2case study
HITP_B Ni3(HITP)2 powder batch · Powder · Dry powder morphology; stable under electron-beam irradiation.
2021 · Why conductivity is not always king-physical properties governing the capacitance of 2D metal-organic framework-based EDLC supercapacitor electrodes: A Ni3(HITP)2case study
HITP_C Ni3(HITP)2 powder batch · Powder · Dry powder morphology; stable under electron-beam irradiation.
2020 · 2D Semiconducting Metal–Organic Framework Thin Films for Organic Spin Valves
100 nm Cu3(HHTP)2 thin film on LSMO/STO · Thin Film · Cu3(HHTP)2 films with different growth cycles and 100 nm film morphology.
2020 · A conductive anionic Co-MOF cage with zeolite framework for supercapacitors
Co-MOF on Ni foam · Electrode · SEM/elemental mapping of Co-MOF and SEM of CTAB-modified samples on Ni foam.
2020 · A conductive metal-organic framework photoanode
Zn2TTFTB-FTO · Thin Film · SEM of Zn2TTFTB-FTO compared with Zn2TTFTB-TiO2 morphology.
2020 · A conductive metal-organic framework photoanode
Zn2TTFTB-TiO2 photoanode · Electrode · Top-view, cross-section and tilted SEM; EDS mapping for C, S and Zn localisation.
2020 · A Dual-Ligand Porous Coordination Polymer Chemiresistor with Modulated Conductivity and Porosity
Cu3(HHTP)(THQ) nanowire black powder · Powder · Nanowires obtained after 24 h reaction were imaged; HRTEM viewed from [010] and [001] directions.
2020 · A highly oriented conductive MOF thin film-based Schottky diode for self-powered light and gas detection
Cu3(C18H6(NH)6)2-20 nm thin film on functionalised n-Si · Thin Film · Top-view/cross-sectional HR-SEM and AFM of Cu3(C18H6(NH)6)2-20 nm film on Si; RMS roughness over 100 um2.
2020 · A highly oriented conductive MOF thin film-based Schottky diode for self-powered light and gas detection
Cu3(C18H6(NH)6)2-x nm thin-film series (x = 40, 60, 80, 100) · Thin Film · Top-view HR-SEM with cross-sectional insets and AFM images for Cu3(C18H6(NH)6)2 films of 40, 60, 80, and 100 nm.
2020 · A Light-Responsive Metal–Organic Framework Hybrid Membrane with High On/Off Photoswitchable Proton Conductivity
SSP@ZIF-8-10% membrane · Thin Film · Surface and cross-sectional morphologies of ZIF-8 and SSP@ZIF-8-10%; O and S EDS maps of the SSP@ZIF-8-10% cross-section.
2020 · Ag-DNA@ZIF-8 membrane: A proton conductive photoswitch
20 mM Ag-DNA@ZIF-8 · Thin Film · Surface/cross-section SEM and Zn/P/Ag EDS mapping of 20 mM Ag-DNA@ZIF-8 membrane.
2020 · Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)
Co-HAB pressed-powder pellet · Pellet · Powder samples before pressing; reproduction confirmed by PXRD and SEM
2020 · Application of two Cu(II)-azido based 1D coordination polymers in optoelectronic device: Structural characterization and experimental studies
ITO/complex 1/Al thin-film Schottky device · Thin Film · Thin film morphology; Fig. 4 instrument metadata in image shows 15.00 kV, 30.00 KX magnification and 200 nm scale bar.
2020 · Application of two Cu(II)-azido based 1D coordination polymers in optoelectronic device: Structural characterization and experimental studies
ITO/complex 2/Al thin-film Schottky device · Thin Film · Thin film morphology; Fig. 4 instrument metadata in image shows 15.00 kV, 30.00 KX magnification and 200 nm scale bar.
2020 · Biporous Cd(II) Coordination Polymer via in Situ Disulfide Bond Formation: Self-Healing and Application to Photosensitive Optoelectronic Device
Bulk/crude material of compound 1 · Powder · SEM images before irradiation, after irradiation and after exposure to air.
2020 · ChemFET Sensor: nanorods of nickel-substituted Metal–Organic framework for detection of SO2
chemically synthesized Ni3HHTP2 nanorods · Powder · AFM image area 3 x 3 um2; SEM used for nanorod average size.
2020 · Colloidal crystal engineering with metal–organic framework nanoparticles and DNA
octahedral UiO-66 nanoparticles · Powder · Octahedral UiO-66 NPs characterised by electron microscopy.
2020 · Colloidal crystal engineering with metal–organic framework nanoparticles and DNA
PCN-222/MOF-545 nanorod nanoparticles · Powder · PCN-222 nanorods characterised by SEM and TEM.
2020 · Colloidal crystal engineering with metal–organic framework nanoparticles and DNA
spherical UiO-66 nanoparticles · Powder · MOF NPs dispersed onto TEM grids by drop-casting dilute ethanol solution; >100 particles measured under analogous synthetic conditions.
2020 · Conductive Metal-Organic Framework Thin Film Hybrids by Electropolymerization of Monosubstituted Acetylenes
BPA@Cu(BDC)-SURMOF-2 after electropolymerisation · Electrode · FIB trenches using FEI Strata 400 with 300 nm Pt protection layer; SEM cross-section at 5 kV; EDX at 5 kV with Oxford Instruments X-MaxN 50 mm2 detector in Gemini LEO 1530 SEM.
2020 · Conductive metal–Organic frameworks endow high-efficient oxygen evolution of La0·6Sr0·4Co0·8Fe0·2O3 perovskite oxide nanofibers
LSCF@Ni3(HITP)2-2 · Powder · FESEM JEOL JSM-7100F; TEM Titan G2 60-300 at 300 kV; morphology, shell, lattice fringes and elemental distributions measured.
2020 · Conductive metal–Organic frameworks endow high-efficient oxygen evolution of La0·6Sr0·4Co0·8Fe0·2O3 perovskite oxide nanofibers
LSCF@Ni3(HITP)2-2 · Powder · Rendered SI Fig. S3 compares SEM/EDS for LSCF, LSCF@Ni3(HITP)2-1/-2/-3/-4 and bare Ni3(HITP)2.
2020 · Conductive Metal–Organic Frameworks with Extra Metallic Sites as an Efficient Electrocatalyst for the Hydrogen Evolution Reaction
Ni3(Ni3.HAHATN)2 modified rotating disk electrode · Electrode · HER stability in 0.1 M KOH; repeated CV for 1000 cycles; chronoamperometry at 10 and 50 mA cm-2 for 10 h.
2020 · Conductive Metal–Organic Frameworks with Extra Metallic Sites as an Efficient Electrocatalyst for the Hydrogen Evolution Reaction
Ni3(Ni3.HAHATN)2 nanosheets · Nanosheet · Morphology and thickness analysis of Ni3(Ni3.HAHATN)2 nanosheets.
2020 · Conductive Metal–Organic Frameworks with Extra Metallic Sites as an Efficient Electrocatalyst for the Hydrogen Evolution Reaction
Ni3(Co3.HAHATN)2 nanosheets · Nanosheet · Characterisation of Ni3(Co3.HAHATN)2, Ni3(Cu3.HAHATN)2 and Cu3(Cu3.HAHATN)2.
2020 · Conductive MOFs as bifunctional oxygen electrocatalysts for all-solid-state Zn-air batteries
[Ni5.7Ru0.3(HHTP)3(H2O)x]n powder · Powder · Rod-like morphology and ordered pore/channel observation.
2020 · Conjugated Copper–Catecholate Framework Electrodes for Efficient Energy Storage
As-synthesised Cu-DBC powder · Powder · JEOL JSM-6700 FE-SEM at 5.0 kV; EDS mapping for C/O/Cu.
2020 · Conjugated Copper–Catecholate Framework Electrodes for Efficient Energy Storage
As-synthesised Cu-DBC powder · Powder · Cu-DBC immersed in nine solvents for seven days; SEM after water immersion.
2020 · Continuous Electrical Conductivity Variation in M3(Hexaiminotriphenylene)2(M = Co, Ni, Cu) MOF Alloys
Co3(HITP)2 powder/pellet · Powder · SEM and TEM/HRTEM of powder crystallites.
2020 · Continuous Electrical Conductivity Variation in M3(Hexaiminotriphenylene)2(M = Co, Ni, Cu) MOF Alloys
Cu3(HITP)2 powder/pellet · Powder · SEM and TEM/HRTEM of powder crystallites.
2020 · Continuous Electrical Conductivity Variation in M3(Hexaiminotriphenylene)2(M = Co, Ni, Cu) MOF Alloys
Ni3(HITP)2 powder/pellet · Powder · SEM and TEM/HRTEM of powder crystallites.
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-btt freestanding pellet · Pellet · Particle size mechanically decreased to 1-10 um by ball milling; compressed into pellets at 2.6 GPa for SEM/EDS compositional mapping.
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-diett freestanding pellet · Pellet · Particle size mechanically decreased to 1-10 um by ball milling; compressed into pellets at 2.6 GPa for SEM/EDS compositional mapping.
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-ett freestanding pellet · Pellet · Particle size mechanically decreased to 1-10 um by ball milling; compressed into pellets at 2.6 GPa for SEM/EDS compositional mapping.
2020 · Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks
HoHHTP powder · Powder · Dry powders deposited on carbon tape and imaged at 1-6 kV.
2020 · Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks
LaHHTP powder · Powder · Dry powders deposited on carbon tape and imaged at 1-6 kV.
2020 · Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks
NdHHTP powder · Powder · Dry powders deposited on carbon tape and imaged at 1-6 kV.
2020 · Efficient and tunable one-dimensional charge transport in layered lanthanide metal–organic frameworks
YbHHTP powder · Powder · Dry powders deposited on carbon tape and imaged at 1-6 kV.
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
Cu3(HHTP)2@Au/SiO2 as-deposited film · Thin Film · Electrodeposited Cu3(HHTP)2 thin film on Au/SiO2
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
Hydrothermal Cu3(HHTP)2 powder · Powder · JEOL JSM-6500F; morphology and thickness characterisation
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
Cu3(HHTP)2@FTO film, 0.435 V · Thin Film · Electrodeposited Cu3(HHTP)2 films on FTO at 0.435, 0.5, 0.6 and 0.7 V
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
Cu3(HHTP)2 pressed pellet · Pellet · Top-view and cross-sectional SEM of pressed pellet
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
PMMA-transferred Cu3(HHTP)2 thin film · Thin Film · PMMA-transferred film; cross-section also imaged using epoxy transfer variant
2020 · Electrochemical deposition of Cu metal-organic framework films for the dual analysis of pathogens
AuNPs/Cu-MOF/GCE electrode · Electrode · SEM after AuNP assembly on Cu-MOF.
2020 · Electrochemical deposition of Cu metal-organic framework films for the dual analysis of pathogens
Cu-MOF/GCE electrode · Electrode · SEM of Cu-MOFs on the electrode surface.
2020 · Electrochemical immunoassay for the carcinoembryonic antigen based on Au NPs modified zeolitic imidazolate framework and ordered mesoporous carbon
ordered mesoporous carbon · Powder · SEM image of ordered mesoporous carbon in SI.
2020 · Electrochemical immunoassay for the carcinoembryonic antigen based on Au NPs modified zeolitic imidazolate framework and ordered mesoporous carbon
Au@ZIF-8 nanoparticles · Powder · TEM images of ZIF-8 and Au@ZIF-8; SEM images of ZIF-8 and Au@ZIF-8.
2020 · Electrochemical Transformation of Metal Organic Framework into Ultrathin Metal Hydroxide-(oxy)hydroxide Nanosheets for Alkaline Water Oxidation
CF-2 · Electrode · Structural and morphological characterisation of CF-2, with CF-1/CF-3/CF-4 comparisons in SI
2020 · Electrochemical Transformation of Metal Organic Framework into Ultrathin Metal Hydroxide-(oxy)hydroxide Nanosheets for Alkaline Water Oxidation
CoFe-PBA@CC · Electrode · SEM/TEM characterisation of particles formed from CoHC nanoarrays
2020 · Electrochemical Transformation of Metal Organic Framework into Ultrathin Metal Hydroxide-(oxy)hydroxide Nanosheets for Alkaline Water Oxidation
NF-2 · Electrode · Characterisation of NF-2 nanosheets derived from NiFe-PBA@CC
2020 · Electrochemical Transformation of Metal Organic Framework into Ultrathin Metal Hydroxide-(oxy)hydroxide Nanosheets for Alkaline Water Oxidation
NiFe-PBA@CC · Electrode · Characterisation of NiFe-PBA@CC precursor
2020 · Encapsulating metal organic framework into hollow mesoporous carbon sphere as efficient oxygen bifunctional electrocatalyst
ZIF@HMCS-m series · Powder · Morphology of ZIF-67, HMCS, ZIF@HMCS-10%, ZIF@HMCS-50%, HMCS-1, ZIF@HMCS-1-25%, ZIF@BHMCS-25%
2020 · Encapsulating metal organic framework into hollow mesoporous carbon sphere as efficient oxygen bifunctional electrocatalyst
ZIF@HMCS-25% · Powder · Morphology and elemental mapping of ZIF@HMCS-25%
2020 · Enhanced bioelectrochemical performance caused by porous metal-organic framework MIL-53(Fe) as the catalyst in microbial fuel cells
MIL-53(Fe) yellow powder · Powder · Main text describes nanopores, rich voids and large surface area as structural features relevant to catalysis.
2020 · Enhanced bioelectrochemical performance caused by porous metal-organic framework MIL-53(Fe) as the catalyst in microbial fuel cells
MIL-53(Fe) yellow powder · Powder · SEM and EDS used to inspect MIL-53(Fe) morphology and Fe/O/C/N distribution.
2020 · Enhancement in electrical conductivity of a porous indium based metal-organic framework upon I2 uptake: Combined experimental and theoretical investigations
I2@1 - 7 days · Powder · Compound 1 before and after iodine uptake.
2020 · Heteroatom-doped 3D porous carbon architectures for highly stable aqueous zinc metal batteries and non-aqueous lithium metal batteries
Li@NOCA@CF · Electrode · Li deposition morphology in ether-based electrolyte at 1 mA cm-2 and 1 mAh cm-2.
2020 · Heteroatom-doped 3D porous carbon architectures for highly stable aqueous zinc metal batteries and non-aqueous lithium metal batteries
NOCA@CF · Electrode · Morphology and elemental distribution of MOF-derived NOCA@CF.
2020 · Heteroatom-doped 3D porous carbon architectures for highly stable aqueous zinc metal batteries and non-aqueous lithium metal batteries
ZIF-8@CF precursor · Electrode · Morphology of ZIF-8@CF precursor nanorod arrays.
2020 · Heteroatom-doped 3D porous carbon architectures for highly stable aqueous zinc metal batteries and non-aqueous lithium metal batteries
Zn@NOCA@CF · Electrode · Zn deposition behaviour on CF and NOCA@CF at 1 mA cm-2.
2020 · High Thermopower in a Zn-Based 3D Semiconductive Metal-Organic Framework
Zn-HAB_NEt3 / TEA 9 equiv as-synthesised powder · Powder · Magellan 400 XHR at 3 kV.
2020 · High-performance non-enzymatic glucose detection: Using a conductive Ni-MOF as an electrocatalyst
Pristine conductive Ni-MOF black powder · Powder · SEM on Hitachi S-4800 at 20 kV; TEM on Hitachi H-8100 at 200 kV; EDX mapping of Ni, C and O.
2020 · Highly Conductive Two-Dimensional Metal-Organic Frameworks for Resilient Lithium Storage with Superb Rate Capability
as-prepared Cu-BHT powder · Powder · as-prepared Cu-BHT powder
2020 · Highly Dispersed MoO2Nanoparticles Confined in N-Doped Porous Carbon Nanosheets for Efficient Hydrogen Evolution in Alkaline Media
Mo-MOF/NF · Electrode · SEM image of Mo-MOF/NF and TEM/HRTEM of Mo-MOF after ultrasonication.
2020 · Highly Dispersed MoO2Nanoparticles Confined in N-Doped Porous Carbon Nanosheets for Efficient Hydrogen Evolution in Alkaline Media
MoO2 NPs@N-C NSs/NF · Electrode · Morphology, nanoparticle encapsulation, lattice spacing, and elemental mapping.
2020 · Highly Selective CO2 Electroreduction to CH4 by In Situ Generated Cu2O Single-Type Sites on a Conductive MOF: Stabilizing Key Intermediates with Hydrogen Bonding
Cu2O@CuHHTP, -1.2 V 30 min · Electrode · TEM at 200 kV; SEM at 10 kV; HAADF-STEM/EDS at 200 kV
2020 · Humidity-mediated anisotropic proton conductivity through the 1d channels of co-mof-74
large Co-MOF-74 single crystals · Single Crystal · 2 kV acceleration voltage, 10 uA emission current; exemplary crystal morphology.
2020 · In Situ Growth of Lithiophilic MOF Layer Enabling Dendrite-free Lithium Deposition
Li@Cu-MOF-30 min · Electrode · Cu, Cu-MOF-30 min and Cu-MOF-24 h after 10 cycles at Li stripping state and after 100 cycles at Li plating state.
2020 · In Situ Growth of Lithiophilic MOF Layer Enabling Dendrite-free Lithium Deposition
Cu-MOF-30 min · Electrode · Initial surface morphology of Cu-MOF-30 min, Cu-MOF-24 h and Cu foil before Li deposition.
2020 · In Situ Growth of Lithiophilic MOF Layer Enabling Dendrite-free Lithium Deposition
Cu-MOF-30 min · Electrode · Cu, Cu-MOF-30 min and Cu-MOF-24 h after deposition of 2.0 mAh cm^-2 Li at 0.5 mA cm^-2.
2020 · Interdigitated conducting tetrathiafulvalene-based coordination networks
Network 4 iodine-treated powder/crystals for EPR, PXRD, and EDX · Powder · Quanta FEG 250 SEM with EDAX detector; oxidised Co material 4.
2020 · Interdigitated conducting tetrathiafulvalene-based coordination networks
Network 5 iodine-treated powder/crystals for EPR, PXRD, and EDX · Powder · Quanta FEG 250 SEM with EDAX detector; oxidised Fe material 5.
2020 · Ionic liquid supported nickel-based metal-organic framework for electrochemical sensing of hydrogen peroxide and electrocatalytic oxidation of methanol
as-synthesised Ni-MOF crystals · Powder · JSM-7600 F SEM used to image Ni-MOF crystal morphology.
2020 · M-008: A stable and reusable metalorganic framework with high crystallinity applied in the photocatalytic hydrogen evolution and the degradation of methyl orange
M-008a · Powder · JEOL 6490LV SEM, high vacuum, 20 kV; EDS elemental analysis from Fig. 3.
2020 · M-008: A stable and reusable metalorganic framework with high crystallinity applied in the photocatalytic hydrogen evolution and the degradation of methyl orange
M-008b · Powder · JEOL 6490LV SEM, high vacuum, 20 kV; EDS elemental analysis from Fig. 3.
2020 · Mixed Anionic and Cationic Redox Chemistry in a Tetrathiomolybdate Amorphous Coordination Framework
dehydrated <Na2MoS4> powder · Powder · JEOL JSM 7600F SEM/EDX on dehydrated <Na2MoS4> powder.
2020 · Multimetal Incorporation into 2D Conductive Metal-Organic Framework Nanowires Enabling Excellent Electrocatalytic Oxidation of Benzylamine to Benzonitrile
NiCoFe-CAT after 10 h BA electrooxidation · Electrode · NiCoFe-CAT after 10 h BA electrooxidation.
2020 · Multimetal Incorporation into 2D Conductive Metal-Organic Framework Nanowires Enabling Excellent Electrocatalytic Oxidation of Benzylamine to Benzonitrile
NiCoFe-CAT nanowire powder · Powder · Morphology and elemental distribution of M-CAT nanowires.
2020 · Multiscale optimization of Li-ion diffusion in solid lithium metal batteries: Via ion conductive metal-organic frameworks
Flexible LCMOF-1/PVDF-HFP/Li-IL SE · Thin Film · Cross-section and surface morphology of flexible composite SE.
2020 · Multiscale optimization of Li-ion diffusion in solid lithium metal batteries: Via ion conductive metal-organic frameworks
UiO-66-2CO2H-NDP · Powder · Particle morphology of nanoscale dispersed UiO-66-2CO2H-NDP.
2020 · Nanorods of a novel highly conductive 2D metal-organic framework based on perthiolated coronene for thermoelectric conversion
Ni-PTC nanorod dark powder · Powder · Hitachi S4800-SEM at 5 kV; samples on conductive silicon substrates and coated with platinum thin film.
2020 · Oxygen-Vacancy-Abundant Ferrites on N-Doped Carbon Nanosheets as High-Performance Li-Ion Battery Anodes
NC@CoFe2O4 powder · Powder · Morphology and elemental mapping for NC@CoFe2O4.
2020 · Oxygen-Vacancy-Abundant Ferrites on N-Doped Carbon Nanosheets as High-Performance Li-Ion Battery Anodes
NC@NiFe2O4 powder · Powder · Morphology and elemental mapping for NC@NiFe2O4.
2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure
Co-THBQ well-crystallised powder · Powder · TEM/HRTEM used JEM 2100F at 120 kV after ethanol dispersion and deposition on a carbon-coated copper grid.
2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure
Fe-THBQ black powder · Powder · TEM/HRTEM used JEM 2100F at 120 kV; about 2 mg framework dispersed in 4 ml waterless ethanol by 5 min ultrasonication and dropped on carbon-coated copper grid.
2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure
Mn-THBQ powder · Powder · TEM/HRTEM used JEM 2100F at 120 kV after ethanol dispersion and deposition on a carbon-coated copper grid.
2020 · Particle size dependence of proton conduction in a cationic lanthanum phosphonate MOF
as-synthesised PCMOF21-AcO bulk powder · Powder · Zeiss SIGMA VP; samples spread on carbon tape on Al pins, vacuum overnight; 2 keV accelerating voltage; thermal field emission source; 1 x 10-7 bar chamber pressure.
2020 · Pillared nickel-based metal-organic frameworks as electrode material with high electrochemical performance
(Zn/Ni)2(bdc)2P powder · Powder · Zeiss SIGMA FESEM; EDS maps and spectrum for (Zn/Ni)2(bdc)2P.
2020 · Proton-Conductive 3D LnIII Metal–Organic Frameworks for Formic Acid Impedance Sensing
ZZU-1 crystalline sample · Single Crystal · Fresh, water-treated, acidic and basic solution-treated ZZU-1/ZZU-2 crystals
2020 · Quantum spin liquid state in a two-dimensional semiconductive metal−organic framework
Activated Cu3(HHTP)2 powder · Powder · Acceleration voltage 5 kV and emission current 10 uA.
2020 · Quantum spin liquid state in a two-dimensional semiconductive metal−organic framework
Activated Zn3(HHTP)2 powder · Powder · Acceleration voltage 5 kV and emission current 10 uA.
2020 · Self-assembled Mo doped Ni-MOF nanosheets based electrode material for high performance battery-supercapacitor hybrid device
M-NMN-1 · Electrode · SEM comparison of Ni-MOF and M-NMN-1/2/3; EDS mapping/content chart for M-NMN-1.
2020 · Sensitive detection of carcinoembryonic antigen (CEA) by a sandwich-type electrochemical immunosensor using MOF-Ce@HA/Ag-HRP-Ab2 as a nanoprobe
Ce-MoF milky white precipitate · Powder · SEM/TEM/EDS images used to establish sheet-like Ce-MoF, HA coating, Ag loading and Au NP size.
2020 · Solid-solid interface growth of conductive metal-organic framework nanowire arrays and their supercapacitor application
Cu3(HHTP)2 nanowire arrays in situ grown on Cu foil · Electrode · Products from Ar, Ar/D-H2O, Ar/O2 and Ar/O-H2O atmospheres compared by SEM and PXRD.
2020 · Solid-solid interface growth of conductive metal-organic framework nanowire arrays and their supercapacitor application
Cu3(HHTP)2 nanowire arrays in situ grown on Cu foil · Electrode · Hitachi S-4800 field emission SEM at 10 keV; products examined without Au/Pt coating.
2020 · Synthesis and characterization of Fe3O4-supported metal–organic framework MIL-101(Fe) for a highly selective and sensitive hydrogen peroxide electrochemical sensor
MIL-101(Fe)@Fe3O4 nanoparticles · Powder · SEM/TEM comparison after MIL-101(Fe) deposition
2020 · Synthesis and characterization of Fe3O4-supported metal–organic framework MIL-101(Fe) for a highly selective and sensitive hydrogen peroxide electrochemical sensor
Fe3O4 nanoparticles · Powder · SEM at 10 kV; TEM with FEI Tecnai G2 Spirit
2020 · Synthesis of a copper 1,3,5-triamino-2,4,6-benzenetriol metal-organic framework
Cu3(TABTO)2-Ar powder · Powder · Morphology of pristine and iodine-doped Cu3(TABTO)2-Ar; AFM on Si/SiO2 in air; HR-TEM at 200 kV.
2020 · Three-dimensional Co/Ni bimetallic organic frameworks for high-efficient catalytic ozonation of atrazine: Mechanism, effect parameters, and degradation pathways analysis
Co/Ni-MOF brown powder · Powder · JSM-7500F SEM with X-Max EDS at 5 kV.
2020 · Trimetallic conductive metal-organic frameworks as precatalysts for the oxygen evolution reaction with enhanced activity
Co0.6Ni0.4-CAT powder/electrode · Electrode · Zeiss Supra 55 SEM, accelerating voltage 5 kV.
2020 · Trimetallic conductive metal-organic frameworks as precatalysts for the oxygen evolution reaction with enhanced activity
FeCo0.8Ni0.2-CAT powder/electrode · Electrode · SI SEM images compare Co-CAT, FeCo-CAT, Ni-CAT, FeNi-CAT, Co0.8Ni0.2-CAT, FeCo0.8Ni0.2-CAT, Co0.4Ni0.6-CAT and FeCo0.4Ni0.6-CAT.
2020 · Tuning Lewis acidity of MIL-88B-Fe with mix-valence coordinatively unsaturated iron centers on ultrathin Ti3C2 nanosheets for efficient photo-Fenton reaction
CUCs-MIL-88B-Fe powder · Powder · SEM after thermal activation.
2020 · Tuning Lewis acidity of MIL-88B-Fe with mix-valence coordinatively unsaturated iron centers on ultrathin Ti3C2 nanosheets for efficient photo-Fenton reaction
MIL-88B-Fe powder · Powder · Morphology imaging using S-4800 SEM.
2020 · Tuning Lewis acidity of MIL-88B-Fe with mix-valence coordinatively unsaturated iron centers on ultrathin Ti3C2 nanosheets for efficient photo-Fenton reaction
CUCs-MIL-88B-Fe/Ti3C2 powder · Powder · SEM, TEM and HRTEM morphology/lattice imaging.
2020 · Tuning Lewis acidity of MIL-88B-Fe with mix-valence coordinatively unsaturated iron centers on ultrathin Ti3C2 nanosheets for efficient photo-Fenton reaction
Ultrathin Ti3C2 nanosheets · Nanosheet · SI image of Ti3C2Tx nanosheets.
2020 · Two-Dimensional Conductive Metal-Organic Frameworks Based on Truxene
truxene-Cu cMOF black powder · Powder · TEM on JEM-2100F at 200 keV; SEM on Thermo Scientific ApreoS or Hitachi SU8010; samples air-dried on carbon-coated copper grid or pasted on conducting resin.
2020 · Two-Dimensional Conductive Ni-HAB as a Catalyst for the Electrochemical Oxygen Reduction Reaction
Ni-HAB-H high-crystallinity powder · Powder · Field-emission SEM, Magellan 400 XHR, 5 kV; pristine and post-catalysis images for Ni-HAB-H and Ni-HAB-L.
2020 · Ultrasensitive Detection of Electrolyte Leakage from Lithium-Ion Batteries by Ionically Conductive Metal-Organic Frameworks
IC-MOF thin film on quartz or silicon wafer · Thin Film · Surface/cross-section morphology and thickness of IC-MOF thin films; AFM thickness variants.
2020 · Ultrasmall Au(0) Inserted Hollow PCN-222 MOF for the High-Sensitive Detection of Estradiol
AuNP/GCE · Electrode · Au nanoparticle morphology and inset particle-size distribution in SI Figure S1.
2020 · Ultrathin two-dimensional conjugated metal-organic framework single-crystalline nanosheets enabled by surfactant-assisted synthesis
HHB-Ni nanosheets · Nanosheet · Structural and morphological characterisation of SDS-assisted HHB-Ni nanosheets.
2020 · Ultrathin two-dimensional conjugated metal-organic framework single-crystalline nanosheets enabled by surfactant-assisted synthesis
bulk HHTP-Cu rod-like powder · Powder · Surfactant-free bulk HHTP-Cu powder imaged to show rod-like morphology and layered stacking.
2020 · Ultrathin two-dimensional conjugated metal-organic framework single-crystalline nanosheets enabled by surfactant-assisted synthesis
HHTP-Cu nanosheets · Nanosheet · Structural and morphological characterisation of SDS-assisted HHTP-Cu nanosheets.
2020 · Ultrathin two-dimensional π-d conjugated coordination polymer Co3(hexaaminobenzene)2 nanosheets for highly efficient oxygen evolution
Co-HAB-NSs · Nanosheet · Catalysts about 10 mg suspended in 5 mL 0.05 M H2SO4 and 1 M KOH for 5 h at room temperature; washed with water and acetone; dried under vacuum for 3 h at 75 C.
2020 · Ultrathin two-dimensional π-d conjugated coordination polymer Co3(hexaaminobenzene)2 nanosheets for highly efficient oxygen evolution
Co-HAB-NSs · Nanosheet · Co-HAB-NSs morphology and thickness; for AFM, nanosheets were dispersed in ethanol by ultrasonication for 30 min.
2020 · Underpinning the conductivity mechanism in wide bandgap metal organic framework through chemical sensing
50-50 Zn:Co ZIF powder · Powder · FEI FESEM at 5 kV bias voltage; SEM images and EDS spectra for ZIF-8, ZIF-67, and mixture; EDS mapping for 50-50 mixture.
2020 · Utilization of counter anions for charge transportation in the electrical device fabrication of Zn(ii) metal-organic frameworks
compound 1 crystals · Single Crystal · SEM image at 120,000x, 5.0 kV, scale bar 100 nm from rendered SI figure.
2020 · Utilization of counter anions for charge transportation in the electrical device fabrication of Zn(ii) metal-organic frameworks
compound 2 crystals · Single Crystal · SEM image at 50,000x, 5.0 kV, scale bar 100 nm from rendered SI figure.
2020 · Valence-Dependent Electrical Conductivity in a 3D Tetrahydroxyquinone-Based Metal-Organic Framework
FeTHQ as-prepared powder · Powder · SEM at 5 kV; TEM at 200 kV under low-dose conditions.
2019 · 3D self-branched zinc-cobalt Oxide@N-doped carbon hollow nanowall arrays for high-performance asymmetric supercapacitors and oxygen electrocatalysis
Co-MOF/CTs · Electrode · Co-MOF nanowall arrays grown on CTs; thickness estimated from enlarged SEM view.
2019 · 3D self-branched zinc-cobalt Oxide@N-doped carbon hollow nanowall arrays for high-performance asymmetric supercapacitors and oxygen electrocatalysis
Co-MOF nanowall arrays on Fe foil, Ni foam and graphite paper · Thin Film · Substrate generality of Co-MOF nanowall array growth on Fe foil, Ni foam and graphite paper.
2019 · 3D self-branched zinc-cobalt Oxide@N-doped carbon hollow nanowall arrays for high-performance asymmetric supercapacitors and oxygen electrocatalysis
3D self-branched ZnCo2O4@NC/CTs · Electrode · Morphology, hollow structure, lattice spacing and elemental distribution of Co-MOF-derived ZnCo2O4@NC nanowalls.
2019 · 3D self-branched zinc-cobalt Oxide@N-doped carbon hollow nanowall arrays for high-performance asymmetric supercapacitors and oxygen electrocatalysis
ZnCo-MOF/CTs etching-time series (10, 20, 30 and 60 min) · Electrode · ZnCo-MOF/CTs precursor morphology and elemental content compared after 10, 20, 30 and 60 min Zn2+ exchange/etching.
2019 · A Copper Coordination Polymer with Matching Energy Level for Modifying Hole Transport Layers to Improve the Performance of Perovskite Solar Cells
optimised Cu-bix-doped PSC · Electrode · Cross-sectional SEM of Cu-bix-doped PSCs.
2019 · A Copper Coordination Polymer with Matching Energy Level for Modifying Hole Transport Layers to Improve the Performance of Perovskite Solar Cells
optimised Cu-bix-doped HTL · Thin Film · Top-view SEM and AFM images of pristine, optimised Cu-bix-doped and excessive Cu-bix-doped HTLs.
2019 · A highly crystalline anthracene-based MOF-74 series featuring electrical conductivity and luminescence
ANMOF-74(Co) bulk powder · Powder · Series-level supporting characterisation for ANMOF-74(Zn/Mg/Ni/Co/Mn); sample_key anchors the measurement to a representative ANMOF sample while notes describe the series scope.
2019 · A Li+ conductive metal organic framework electrolyte boosts the high-temperature performance of dendrite-free lithium batteries
ZIF-67 MOF powder · Powder · FEI Quanta 600 SEM.
2019 · A two-dimensional semiconducting covalent organic framework with nickel(II) coordination for high capacitive performance
Ni0-COF powder · Powder · Control framework characterisation in SI figures S3-S16 and Table S2.
2019 · A two-dimensional semiconducting covalent organic framework with nickel(II) coordination for high capacitive performance
Ni-COF black powder · Powder · Morphology and elemental distribution of Ni-COF powder.
2019 · Anisotropic Redox Conductivity within a Metal-Organic Framework Material
EPD NU-1000 thin film on ZnO-coated FTO · Electrode · Hitachi SU8030 SEM; samples coated with 9 nm OsO4.
2019 · Anisotropic Redox Conductivity within a Metal-Organic Framework Material
Solvothermal NU-1000 thin film on ZnO-coated FTO · Electrode · Hitachi SU8030 SEM; samples coated with 9 nm OsO4.
2019 · Bottom-Up Fabrication of 1D Cu-based Conductive Metal–Organic Framework Nanowires as a High-Rate Anode towards Efficient Lithium Storage
as-obtained Cu-CAT NWs · Powder · Morphology and elemental distribution of as-obtained Cu-CAT NWs.
2019 · Bunching and Immobilization of Ionic Liquids in Nanoporous Metal-Organic Framework
Empty HKUST-1 SURMOF thin film on interdigitated gold electrodes · Thin Film · Cross-section and top-view SEM of HKUST-1 SURMOF on interdigitated gold electrode substrate.
2019 · Catalytic Metal Nanoparticles Embedded in Conductive Metal–Organic Frameworks for Chemiresistors: Highly Active and Conductive Porous Materials
Cu3(HHTP)2, Pd@Cu3(HHTP)2, and Pt@Cu3(HHTP)2 powder comparison set · Powder · SEM/TEM morphology and nanoparticle dispersion of pristine and Pd/Pt-loaded Cu3(HHTP)2 powders.
2019 · Cellulose Nanofiber @ Conductive Metal-Organic Frameworks for High-Performance Flexible Supercapacitors
CNF@Ni-HITP-15 nanopaper · Electrode · Diameter distributions and nanolayer labels read from SI Figure S16.
2019 · Cellulose Nanofiber @ Conductive Metal-Organic Frameworks for High-Performance Flexible Supercapacitors
CNF@Ni-HITP nanopaper · Electrode · TEM of single CNF@Ni-HITP hybrid nanofiber; SEM of CNF@c-MOF nanofibers and nanopapers.
2019 · Co 3 O 4 @Cu-Based Conductive Metal–Organic Framework Core–Shell Nanowire Electrocatalysts Enable Efficient Low-Overall-Potential Water Splitting
Co3O4@CuCAT optimal core-shell electrode · Electrode · SEM, TEM, HRTEM, and EDS mapping of core-shell Co3O4@CuCAT.
2019 · Conductive 2D metal-organic framework for high-performance cathodes in aqueous rechargeable zinc batteries
as-synthesised Cu3(HHTP)2 powder / nanorods · Powder · FE-SEM at 20 kV and 20 uA; LD-HRTEM on JEOL Grand ARM at 300 kV using low electron dose.
2019 · Conductive MOF-Modified Separator for Mitigating the Shuttle Effect of Lithium-Sulfur Battery through a Filtration Method
Ni3(HITP)2 after Li-S cell cycling/discharge · Powder · Elemental mapping of Ni3(HITP)2 before and after cycling.
2019 · Conductive MOF-Modified Separator for Mitigating the Shuttle Effect of Lithium-Sulfur Battery through a Filtration Method
Ni3(HITP)2-modified separator · Thin Film · SEM of Ni3(HITP)2 layer stacked on PP surface.
2019 · Conductive MOF-Modified Separator for Mitigating the Shuttle Effect of Lithium-Sulfur Battery through a Filtration Method
As-synthesised Ni3(HITP)2 powder · Powder · Low- and high-magnification images of synthesised Ni3(HITP)2 powder.
2019 · Construction of 1D conductive Ni-MOF nanorods with fast Li+ kinetic diffusion and stable high-rate capacities as an anode for lithium ion batteries
As-synthesised Ni-CAT nanorods · Powder · As-synthesised Ni-CAT nanorods; FESEM/TEM scale bars 500 nm and 50 nm; EDS maps for Ni, O and C.
2019 · Copper-based conductive metal organic framework in-situ grown on copper foam as a bifunctional electrocatalyst
Cu3HITP2/CF · Electrode · SEM on FEI Scios at 20 kV; TEM on FEI TECNAI G2 F20 at 200 kV; EDX elemental mapping for Cu, N and C.
2019 · Copper-based conductive metal organic framework in-situ grown on copper foam as a bifunctional electrocatalyst
Cu3HITP2/CF · Electrode · XRD and SEM after OER and ORR used to assess phase/morphology stability.
2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction
HKUST-1 ED after 0.5 M H2SO4 soaking · Electrode · HKUST-1 ED soaked in 0.5 M H2SO4 for 2 h, then checked by SEM and Raman spectroscopy.
2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction
Cu nanoparticle/carbon paper intermediate · Electrode · SEM images of copper nanoparticles deposited on carbon paper.
2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction
HKUST-1 ED on carbon paper · Electrode · SEM of electrodeposited HKUST-1 on carbon paper.
2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction
HKUST-1 HT powder/crystals · Powder · SEM of hydrothermal HKUST-1 comparison particles.
2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction
HKUST-1 ED on carbon paper · Electrode · SEM images of HKUST-1 ED after HER catalysis.
2019 · Efficient MOF-Sensitized Solar Cells Featuring Solvothermally Grown [100]-Oriented Pillared Porphyrin Framework-11 Films on ZnO/FTO Surfaces
[100]-oriented PPF-11 film on TCPP-coated ZnO-FTO · Electrode · Hitachi SU6600; top-view and cross-section images
2019 · Electrocatalytic Hydrogen Evolution from a Cobaloxime-Based Metal-Organic Framework Thin Film
Bulk UU-100(Co) powder · Powder · SEM/EDX on rod-shaped UU-100(Co) crystallites; ICP-OES after acid/peroxide microwave digestion.
2019 · Electrocatalytic Hydrogen Evolution from a Cobaloxime-Based Metal-Organic Framework Thin Film
UU-100(Co)|FTO thin-film electrode · Electrode · As-prepared UU-100(Co)|FTO thin film and films after electrochemical cycling.
2019 · Electrocatalytic Hydrogen Evolution from a Cobaloxime-Based Metal-Organic Framework Thin Film
UU-100(Co)|GC thin-film electrode · Electrode · UU-100(Co)|GC after 3 h, 5 h, 6 h, and 18 h electrolysis at -0.45 V vs RHE in acetate buffer pH 4.
2019 · Enhancement of Electrical Conductivity due to Structural Distortion from Linear to Nonlinear Dicarboxylato-Bridged Zn(II) 1D-Coordination Polymers
Compound 1 bulk crystals/powder · Single Crystal · JEOL JSM-6700F field-emission SEM with EDS.
2019 · Enhancement of Electrical Conductivity due to Structural Distortion from Linear to Nonlinear Dicarboxylato-Bridged Zn(II) 1D-Coordination Polymers
Compound 2 bulk crystals/powder · Single Crystal · JEOL JSM-6700F field-emission SEM with EDS.
2019 · Exposing {001} Crystal Plane on Hexagonal Ni-MOF with Surface-Grown Cross-Linked Mesh-Structures for Electrochemical Energy Storage
Y3 · Powder · Y3 after 5000 three-electrode cycles and Y3 after soaking in 3.0 M KOH for 24 h.
2019 · Exposing {001} Crystal Plane on Hexagonal Ni-MOF with Surface-Grown Cross-Linked Mesh-Structures for Electrochemical Energy Storage
temperature-screen Ni-MOF samples · Powder · SEM for temperature-screen and amount-screen products.
2019 · Exposing {001} Crystal Plane on Hexagonal Ni-MOF with Surface-Grown Cross-Linked Mesh-Structures for Electrochemical Energy Storage
Y1-Y5 hexagonal Ni-MOF powders · Powder · Y1-Y5 powders prepared at 80 deg C for 6, 12, 18, 24, and 30 h; multiple magnifications.
2019 · Fabrication of 3D Co-doped Ni-based MOF hierarchical micro-flowers as a high-performance electrode material for supercapacitors
Co2-Ni-MOF powder · Powder · SEM and TEM morphology imaging of Co2-Ni-MOF.
2019 · Fabrication of 3D Co-doped Ni-based MOF hierarchical micro-flowers as a high-performance electrode material for supercapacitors
Ni-MOF powder · Powder · SEM and TEM morphology imaging of Ni-MOF.
2019 · Field effect transistor based on proton conductive metal organic framework (CuBTC)
Im@CuBTC powder/crystals · Powder · FE-SEM images of CuBTC and Im@CuBTC.
2019 · Field-Effect Transistor Based on an in Situ Grown Metal-Organic Framework Film as a Liquid-Gated Sensing Device
Ni-MOF-FET prepared by scooping-up method · Thin Film · SEM and electrical-property comparison for alternative film-transfer/deposition methods.
2019 · Field-Effect Transistor Based on an in Situ Grown Metal-Organic Framework Film as a Liquid-Gated Sensing Device
Ni-MOF-FET reacted for 60 min · Thin Film · Morphology and cross-sectional thickness of Ni-MOF films grown for 5, 15, 30, 60, and 120 min, including Au/no-Au comparisons.
2019 · From Low-to High-Crystallinity Bimetal-Organic Framework Nanosheet with Highly Exposed Boundaries: An Efficient and Stable Electrocatalyst for Oxygen Evolution Reaction
(U+S)-CoFe-MOF hierarchical nanosheets · Nanosheet · Nanosheet morphology, thickness, mesoporosity, lattice fringes and elemental distribution.
2019 · General Synthesis of Mixed Semiconducting Metal Oxide Hollow Spheres with Tunable Compositions for Low-Temperature Chemiresistive Sensing
Fe-Co-TA-400 · Powder · Morphology, hollow-shell structure, element distribution and crystallinity of binary, ternary and quinary MOHSs.
2019 · Highly Conductive Bimetallic Ni-Fe Metal Organic Framework as a Novel Electrocatalyst for Water Oxidation
FeNi-DOBDC-3 · Nanosheet · SEM at 30 kV; HRTEM at 200 kV; samples dispersed from ethanol onto silicon wafer or carbon-coated copper TEM grids.
2019 · Highly Electroconductive Metal-Organic Framework: Tunable by Metal Ion Sorption Quantity
TMU-60-Cd powder · Powder · SEM images of TMU-60, TMU-60-Cd, and magnified region for EDS; EDS spectra before/after Cd sorption.
2019 · Integration of a (–Cu–S–) n plane in a metal–organic framework affords high electrical conductivity
As-synthesised brown rod-shaped crystals of compound 1 · Single Crystal · Bright-field/dark-field optical images and SEM of rod-shaped crystals.
2019 · Li + Ion-Conducting Sulfonate-Based Neutral Metal-Organic Framework
LiClO4-treated Cu(I)-sulfonate MOF pellet · Pellet · SEM-EDX comparison of pristine and LiClO4-treated Cu(I)-sulfonate MOF.
2019 · Metal organic framework doped Spiro-OMeTAD with increased conductivity for improving perovskite solar cell performance
HTM/In10-4 film · Thin Film · PL of perovskite contacting HTM or HTM/In10 films; top-view SEM images recorded on Hitachi SU 8000HSD.
2019 · Metal organic framework doped Spiro-OMeTAD with increased conductivity for improving perovskite solar cell performance
PSC with HTM/In10-4 · Electrode · Rendered SI Figure S3 shows cross-sectional SEM images labelled (a)-(d) for HTM, HTM/In10-2, HTM/In10-4 and HTM/In10-6 based PSCs.
2019 · Metal-Organic Framework Photoconductivity via Time-Resolved Terahertz Spectroscopy
Zn2TTFTB thin film on FTO · Thin Film · Zn2TTFTB thin film on FTO checked for crystallinity and thickness.
2019 · Metal-Organic Framework Photoconductivity via Time-Resolved Terahertz Spectroscopy
As-synthesised Zn2TTFTB powder · Powder · Polycrystalline Zn2TTFTB crystallites imaged by SEM.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTCDA-LNMO powder · Powder · Characterisation instrument details reported for all Ni-Mn-MOF and LNMO samples.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
BCA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
BCA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
DTA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
DTA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
OBA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
OBA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTCDA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTCDA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
TCA-LNMO powder · Powder · Morphology and lattice imaging of prepared LNMO powders.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
TCA-Ni-Mn-MOFs · Powder · Morphology of hydrothermally prepared Ni-Mn-MOF precursor.
2019 · Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity
microCP1 after ultrasound sonication · Nanosheet · CP1 suspension sampled after 1 h sonication and before centrifugation; aliquot deposited on SiO2.
2019 · Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity
nanoCP1 supernatant flakes · Nanosheet · Supernatant after 1 h sonication and 3000 rpm centrifugation for 2 min; aliquot deposited on SiO2.
2019 · Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity
CP1 turquoise needle-shaped single crystals · Single Crystal · Original millimetre CP1 crystals imaged before ultrasound treatment.
2019 · Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity
nanoCP1 supernatant flakes · Nanosheet · Aliquots of CP1 suspension deposited on SiO2 after sonication and centrifugation.
2019 · Nanocubic bimetallic organic framework self-templated from Ni precursor as efficient electrocatalysts for oxygen evolution reaction
Ni NCs · Powder · Morphology observed by Hitachi SU8010 FE-SEM and JEM-1200EX TEM.
2019 · Nanocubic bimetallic organic framework self-templated from Ni precursor as efficient electrocatalysts for oxygen evolution reaction
Ni NCs@MIL-53(NiFe), optimised Ni NCs:FeCl2 mass ratio 3 · Powder · TEM operated at 200 kV for EDS and SAED; morphology and lattice spacing recorded.
2019 · Nanoporous gold induced vertically standing 2D NiCo bimetal-organic framework nanosheets for non-enzymatic glucose biosensing
vertical NiCo(1:1)-MOFNs array on nanoporous gold, 4 h growth · Electrode · Element mapping and EDX of NiCo-MOFNs on NPG needle
2019 · Nanoporous gold induced vertically standing 2D NiCo bimetal-organic framework nanosheets for non-enzymatic glucose biosensing
NiCo-MOFNs on gold plate · Electrode · SEM comparison of NiCo-MOFNs on non-NPG substrates
2019 · Nanoporous gold induced vertically standing 2D NiCo bimetal-organic framework nanosheets for non-enzymatic glucose biosensing
vertical NiCo(1:1)-MOFNs array on nanoporous gold, 4 h growth · Electrode · NiCo-MOFNs array morphology after 4 h growth on NPG; scale bars 25 um and 5 um inset
2019 · Novel semiconducting iron–quinizarin metal–organic framework for application in supercapacitors*
as-synthesised FeQ black precipitate / powder with small crystals · Powder · Figure image labels show SEM HV 5.0 kV, SEM magnification 5.00 kx, WD 16.14 mm, 10 micrometre scale bar
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Cu-CAT-1 on ITO agglomerate control · Thin Film · Control experiment for Cu-CAT-1 growth on ITO.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Co-CAT-1 bulk microcrystalline powder · Powder · Bulk M-CAT-1 crystallite morphology from SEM micrographs.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Cu-CAT-1 bulk microcrystalline powder · Powder · Bulk M-CAT-1 crystallite morphology from SEM micrographs.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Ni-CAT-1 bulk microcrystalline powder · Powder · Bulk M-CAT-1 crystallite morphology from SEM micrographs.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Co-CAT-1 thin film on glass · Thin Film · Glass-supported Co-CAT-1 film orientation and morphology.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Co-CAT-1 thin film on gold · Thin Film · 2D GIWAXS indexed to M-CAT-1; SEM cross-sections/top-view, TEM after removing film, AFM surface roughness.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Co-CAT-1 film on ITO · Thin Film · Oxide-supported film orientation and morphology.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Cu-CAT-1 thin film on gold from copper nitrate trihydrate · Thin Film · Cu-CAT-1 film from copper nitrate trihydrate precursor on gold.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Cu-CAT-1 film on gold from copper trifluoroacetylacetonate · Thin Film · 2D GIWAXS indexed to M-CAT-1; SEM cross-sections/top-view, TEM after removing film, AFM surface roughness.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Ni-CAT-1 thin film on glass · Thin Film · Glass-supported Ni-CAT-1 film orientation and morphology.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Ni-CAT-1 thin film on gold · Thin Film · 2D GIWAXS indexed to M-CAT-1; SEM cross-sections/top-view, TEM after removing film, AFM surface roughness.
2019 · Oriented Thin Films of Electroactive Triphenylene Catecholate-Based Two-Dimensional MetalOrganic Frameworks
Oriented Ni-CAT-1 thin film on ITO · Thin Film · Oxide-supported film orientation and morphology.
2019 · Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals
as-prepared IRMOF-8 microstructures in DMF · Powder · Randomly patterned surface porosity and voids observed in as-prepared DMF microstructures.
2019 · Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals
IRMOF-8 microstructures cast from butanone · Thin Film · Morphology after dispersing original microstructures in butanone, drop casting and annealing at 100 C for 5 min.
2019 · Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals
as-prepared IRMOF-8 microstructures in DMF · Powder · Morphology of microstructures as prepared in DMF.
2019 · Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals
IRMOF-8 microstructures cast from DMF/propanol · Thin Film · Morphology after dispersing original microstructures in DMF/propanol, drop casting and annealing at 100 C for 5 min.
2019 · Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals
IRMOF-8 microstructures cast from toluene · Thin Film · Morphology after dispersing original microstructures in toluene, drop casting and annealing at 100 C for 5 min.
2019 · Single Crystals of Electrically Conductive Two-Dimensional Metal-Organic Frameworks: Structural and Electrical Transport Properties
Exfoliated Cu3(HHTP)2 flakes · Nanosheet · Flakes obtained from solvent sonication were examined by SEM, 2D AFM/height profile, optical microscopy and TEM.
2019 · Two-dimensional π-conjugated metal-organic framework with high electrical conductivity for electrochemical sensing
Cu3(HHTP)2 film on ITO-coated glass · Thin Film · SEM image of Cu3(HHTP)2 film drop-cast on ITO-coated glass; JEOL JSM-7001F.
2018 · Bioinspired fiber-like porous Cu/N/C electrocatalyst facilitating electron transportation toward oxygen reaction for metal-air batteries
Cu-MOF · Powder · FESEM morphology of Cu-MOF fibres; instrument described in SI as FEI Quanta-200.
2018 · Bioinspired fiber-like porous Cu/N/C electrocatalyst facilitating electron transportation toward oxygen reaction for metal-air batteries
CuNC (MOF) · Powder · FESEM and TEM morphology plus C/Cu/N elemental mapping.
2018 · Bioinspired fiber-like porous Cu/N/C electrocatalyst facilitating electron transportation toward oxygen reaction for metal-air batteries
CuNC NPs · Powder · SEM images of direct-pyrolysis CuNC nanoparticle control.
2018 · Composition-dependent electrocatalytic activities of NiFe-based selenides for the oxygen evolution reaction
NiFe-PBA · Powder · Morphology imaging of NiFe-PBA precursor.
2018 · Composition-dependent electrocatalytic activities of NiFe-based selenides for the oxygen evolution reaction
Ni-Fe-Se1:1-180 · Powder · Morphology, elemental distribution and lattice spacing of target selenide.
2018 · Conductive Metal-Organic Frameworks as Ion-to-Electron Transducers in Potentiometric Sensors
GCE/M3HHTP2 MOF film series · Electrode · Hitachi TM3000 SEM with Bruker Edax light element Si(Li) detector.
2018 · Construction of hierarchical nickel cobalt selenide complex hollow spheres for pseudocapacitors with enhanced performance
(Ni0.33Co0.67)Se2 CHS working electrode · Electrode · SEM and EDS after cycling of the hierarchical (Ni0.33Co0.67)Se2 CHS electrode; supporting figures are in rendered SI
2018 · Construction of hierarchical nickel cobalt selenide complex hollow spheres for pseudocapacitors with enhanced performance
Ni-Co-MOF solid spheres · Powder · Zeiss Supra55 SEM; as-prepared Ni-Co-MOF precursor
2018 · Construction of hierarchical nickel cobalt selenide complex hollow spheres for pseudocapacitors with enhanced performance
NiCo2O4 MHSs · Powder · Zeiss Supra55 SEM; annealed oxide intermediate
2018 · Construction of hierarchical nickel cobalt selenide complex hollow spheres for pseudocapacitors with enhanced performance
hierarchical (Ni0.33Co0.67)Se2 CHSs · Powder · Zeiss Supra55 SEM; hydrothermally selenized product
2018 · Development of a UiO-Type Thin Film Electrocatalysis Platform with Redox-Active Linkers
Zr(dcphOH-NDI) bulk microcrystalline powder · Powder · Zeiss 1550 Schottky FE-SEM, InLens detector, 5 kV; powder coated with Pd-Au for 30 s.
2018 · Development of a UiO-Type Thin Film Electrocatalysis Platform with Redox-Active Linkers
Zr(dcphOH-NDI)@FTO thin film · Thin Film · Thin film on FTO characterised by PXRD, SEM, XPS Zr 3d/N 1s/C 1s; XPS used Al K-alpha radiation and C 1s correction.
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
D-Fe2O3-NSA microrods · Powder · D-Fe2O3-NSA comparison after oxidation at 350 deg C
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
D-FeSe2/C microrods · Powder · Dense FeSe2/C comparison sample prepared by direct selenization of MIL-88
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
Fe@GC microrods · Powder · Fe@GC microrods after reduction at 450 deg C under H2/Ar
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
H-Fe2O3-NSA microrods · Powder · H-Fe2O3-NSA after oxidation of Fe@GC at 300 deg C in air
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
H-FeSe2/GC microrods · Powder · H-FeSe2/GC after selenization of Fe@GC at 250 deg C under H2/Ar
2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework
MIL-88 microrods · Powder · MIL-88 precursor morphology, phase, and surface area; XRD and BET details primarily in SI figures referenced from main text
2018 · Electron delocalization and charge mobility as a function of reduction in a metal-organic framework
Fe2(BDP)3 single-microcrystal FET device · Single Crystal · SEM images of microcrystals and bonded devices; e-beam exposure stability check at 5.0 kV.
2018 · Encapsulating ionic liquids into POM-based MOFs to improve their conductivity for superior lithium storage
PMo12-ILs@MIL-100 crystals · Powder · SEM/TEM images for PMo12-ILs@MIL-100 and PMo10V2-ILs@HKUST-1; STEM elemental mapping for both controls.
2018 · Encapsulating ionic liquids into POM-based MOFs to improve their conductivity for superior lithium storage
PMo10V2-ILs@MIL-100 crystals · Powder · Morphology and elemental distribution of PMo10V2-ILs@MIL-100 crystals; comparisons to MIL-100 and PMo10V2@MIL-100.
2018 · Fabrication of an Active Electronic Device Using a Hetero-bimetallic Coordination Polymer
Powdered/bulk [(NCS)Pb(H2O)LNi(NCS)]n · Powder · Microstructure observed for the complex.
2018 · High electrical conductivity and high porosity in a Guest@MOF material: Evidence of TCNQ ordering within Cu3BTC2 micropores
VPI xTCNQ@Cu3BTC2 concentration series · Powder · Top-view micrographs of MOF powders on Merlin high-resolution SEM at 5 kV; transfer under argon; 5 nm Pt coating; EDX at 5 kV.
2018 · High-mobility band-like charge transport in a semiconducting two-dimensional metal–organic framework
Large-area free-standing Fe3(THT)2(NH4)3 multilayer film · Thin Film · Composition and coordination analysis of Fe3(THT)2(NH4)3 films.
2018 · High-mobility band-like charge transport in a semiconducting two-dimensional metal–organic framework
Large-area free-standing Fe3(THT)2(NH4)3 multilayer film · Thin Film · Structural and morphological characterisation of free-standing/transferred films at room temperature.
2018 · Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks
Ag-BHT nanocrystals exfoliated from film · Unknown · TEM with JEOL 2100F at 120 kV; high-resolution STEM with aberration-corrected Nion Ultra STEM 100 at 60 kV, ADF detector half-angle 86-200 mrad.
2018 · Highly Conductive 2D Metal-Organic Framework Thin Film Fabricated by Liquid-Liquid Interfacial Reaction Using One-Pot-Synthesized Benzenehexathiol
Ag3BHT2 thin film · Thin Film · SEM surface images of thin and thick films; samples first covered with 5 nm platinum.
2018 · Highly Conductive 2D Metal-Organic Framework Thin Film Fabricated by Liquid-Liquid Interfacial Reaction Using One-Pot-Synthesized Benzenehexathiol
Ag3BHT2 thin film · Thin Film · Film thickness determined from SEM cross-sectional images; thin films measured with NOVA NANO SEM 450 and thick films with JEOL JSM6510.
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
bare Fe2O3 · Electrode · Top-view SEM of bare hematite nanorod array.
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
Fe2O3@Co-MOF varied Co/MIm ratio series · Electrode · SEM comparison of Co-only, MIm-only, and Co/MIm ratio modified hematite films.
2018 · Increased Electrical Conductivity in a Mesoporous Metal-Organic Framework Featuring Metallacarboranes Guests
spin-coated Mn-AIM-NiCB@NU-1000 thin film · Thin Film · Characterisation of Mn-AIM-NU-1000 and Mn-AIM-NiCB@NU-1000 after AIM installation.
2018 · Increased Electrical Conductivity in a Mesoporous Metal-Organic Framework Featuring Metallacarboranes Guests
NiCB@NU-1000 powder · Powder · Powder XRD patterns compared with simulated NU-1000; SEM image of NiCB@NU-1000.
2018 · Mithrene is a self-assembling robustly blue luminescent metal-organic chalcogenolate assembly for 2d optoelectronic applications
CTAB-modified Janus mithrene crystallites · Thin Film · Crystals grown with CTAB in the aqueous layer; compared with non-surfactant conditions.
2018 · Mithrene is a self-assembling robustly blue luminescent metal-organic chalcogenolate assembly for 2d optoelectronic applications
Mithrene concentration and growth-time screening samples · Thin Film · Samples organised by silver concentration on the y-axis and growth time on the x-axis; AgNO3 and DPSe screens over 0.5-10 mM and 3, 5, 10 days.
2018 · Mithrene is a self-assembling robustly blue luminescent metal-organic chalcogenolate assembly for 2d optoelectronic applications
Standard 3 mM/3 mM mithrene crystals harvested on silicon · Thin Film · FEI Phenom ProX Tabletop SEM at 5 or 15 kV; Zeiss Gemini Ultra-55 FESEM at 1-3 kV for additional high-resolution images.
2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework
BEDT-TTF doped Mn-MOF crystals · Powder · SEM image and EDX spectrum; S/Mn ratio used to estimate BEDT-TTF loading.
2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework
TMTSF doped Mn-MOF crystals · Powder · SEM image and EDX spectrum; Se/Mn ratio used to estimate TMTSF loading.
2018 · Nanostructured CuO/C Hollow Shell@3D Copper Dendrites as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction
as-prepared Cu2O-Cu NDs electrode · Electrode · Top-view, cross-sectional, zoomed SEM and TEM of as-prepared Cu2O-Cu nanodendrite foam.
2018 · Nanostructured CuO/C Hollow Shell@3D Copper Dendrites as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction
MOFs coated NDs · Electrode · Structure and composition of HKUST-1 MOF-coated nanodendrites.
2018 · Nanostructured CuO/C Hollow Shell@3D Copper Dendrites as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction
HS-CuO/C NDs electrode · Electrode · Low- and high-magnification imaging of hollow-shell CuO/C nanodendrites.
2018 · Nanostructured CuO/C Hollow Shell@3D Copper Dendrites as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction
HS-CuO/C NDs electrode · Electrode · 1.0 M KOH at 10 mA cm-2 for 50 h.
2018 · Quantum Effects Allow the Construction of Two-Dimensional Co3O4-Embedded Nitrogen-Doped Porous Carbon Nanosheet Arrays from Bimetallic MOFs as Bifunctional Oxygen Electrocatalysts
2D-MCo3O4-NCNAs-15-900 · Nanosheet · Elemental mapping and EDX spectrum for target 2D-MCo3O4-NCNAs.
2018 · Quantum Effects Allow the Construction of Two-Dimensional Co3O4-Embedded Nitrogen-Doped Porous Carbon Nanosheet Arrays from Bimetallic MOFs as Bifunctional Oxygen Electrocatalysts
2D-MCo3O4-NCNAs-15-900 · Nanosheet · Structure of the target 2D-MCo3O4-NCNAs derived from ZnCo-ZIF-15.
2018 · Quantum Effects Allow the Construction of Two-Dimensional Co3O4-Embedded Nitrogen-Doped Porous Carbon Nanosheet Arrays from Bimetallic MOFs as Bifunctional Oxygen Electrocatalysts
Co3O4-NC-5-900 · Powder · Morphology and lattice-fringe analysis of ZnCo-ZIF-5-derived Co3O4-NC-5-900.
2018 · Quantum Effects Allow the Construction of Two-Dimensional Co3O4-Embedded Nitrogen-Doped Porous Carbon Nanosheet Arrays from Bimetallic MOFs as Bifunctional Oxygen Electrocatalysts
ZnCo-ZIF-15 precursor · Powder · ZnCo-ZIF-n precursor particle-size comparison for ammonia amounts 5, 10, and 15 uL.
2018 · Selective reduction of CO2 by conductive MOF nanosheets as an efficient co-catalyst under visible light illumination
Exfoliated Ni3(HITP)2 nanosheets · Nanosheet · FE-SEM on silicon wafer, TEM imaging, AFM topography and EDX elemental mapping of nanosheets.
2018 · Semiconducting lanthanide polymers of pyridine-2,6-dicarboxylate: Hydrothermal synthesis, structural characterization, electrical conductivity and luminescence properties
compound 1 colourless crystals · Single Crystal · Different magnifications; single crystals/images in Fig. 5(e-h).
2018 · Semiconducting lanthanide polymers of pyridine-2,6-dicarboxylate: Hydrothermal synthesis, structural characterization, electrical conductivity and luminescence properties
compound 2 violet crystals · Single Crystal · Different magnifications; single crystals/images in Fig. 5(i-l).
2018 · Stabilization of Hexaaminobenzene in a 2D Conductive Metal-Organic Framework for High Power Sodium Storage
Co-HAB-D optimised mixed-solvent product · Powder · TEM samples dispersed in acetone and transferred to carbon-coated copper grid; JEOL JEM2100 at 200 kV under low dose; SEM at 5-10 kV.
2018 · Surface Morphology and Electrical Properties of Cu3BTC2 Thin Films before and after Reaction with TCNQ
Cu(TCNQ) film from 50-cycle Cu3BTC2 device · Electrode · FEI XL30s SEM at 5 kV; samples coated with 3 nm AuPd for image quality and charging reduction.
2018 · Synthesis and Electric Properties of a Two-Dimensional Metal-Organic Framework Based on Phthalocyanine
as-synthesised/activated Cu-CuPc black powder · Powder · Hitachi High Technologies SU-9000
2018 · Tarnishing Silver Metal into Mithrene
Thin Ag on Si(100) etch/no-reaction control · Thin Film · Elemental maps for [AgSePh]inf grown on thin 10 nm Ag on Si(100) under excess water; etch pits compared with MOCHA crystals
2018 · Tarnishing Silver Metal into Mithrene
[AgSePh]inf progression films from 200 nm Ag · Thin Film · SEM images after 1, 3, 4, and 8 days and cross-sectional imaging after 8 days
2017 · 2D MOF nanoflake-assembled spherical microstructures for enhanced supercapacitor and electrocatalysis performances
Ni/Co-MOF nanoflakes · Nanosheet · Morphology and elemental mapping of Ni/Co-MOF nanoflakes.
2017 · 2D MOF nanoflake-assembled spherical microstructures for enhanced supercapacitor and electrocatalysis performances
as-prepared ZIF-67 nanocrystals · Powder · SEM image of ZIF-67 precursor nanoseeds.
2017 · A Microporous and Naturally Nanostructured Thermoelectric Metal-Organic Framework with Ultralow Thermal Conductivity
pressed pellet of Ni3(HITP)2 · Pellet · Beam voltage 3 kV; pellet morphology and grain boundaries inspected.
2017 · Carbon-incorporated Janus-type Ni2P/Ni hollow spheres for high performance hybrid supercapacitors
NP-150 · Powder · Field-emission SEM, EDS, TEM and HRTEM used to compare Ni-MOFs and NP-150; SI Fig. S1 extends SEM across N-0 and NP-series samples.
2017 · Colossal Increase in Electric Current and High Rectification Ratio in a Photoconducting, Self-Cleaning, and Luminescent Schottky Barrier NMOF Diode
NMOF-1 bulk nanosheets/powder · Nanosheet · FESEM on silicon wafer; TEM after ethanol sonication/drop-casting on carbon-coated Cu grid; AFM height profiles
2017 · Conductive Metal–Organic Framework Nanowire Array Electrodes for High-Performance Solid-State Supercapacitors
Cu-CAT nanowire arrays on carbon fibre paper · Electrode · Blank carbon fibre paper compared with Cu-CAT NWAs grown on fibres; FE-SEM operated at 1.5 or 5.0 kV.
2017 · Controllable proton-conducting pathways: Via situating polyoxometalates in targeting pores of a metal-organic framework
TETA@3 · Powder · EDX used to determine the number of N atoms/proton-hopping sites per Cr(III) ion.
2017 · CoP nanoparticles embedded in P and N co-doped carbon as efficient bifunctional electrocatalyst for water splitting
As-synthesised Co-MOF precursor · Powder · Supporting Figure S1 shows SEM image and XRD pattern of Co-MOFs.
2017 · Drawing sensors with ball-milled blends of metal-organic frameworks and graphite
Cu3HHTP2/graphite blended pellet · Pellet · SEM and EDS comparison of pure Cu3HHTP2, graphite and Cu3HHTP2/graphite blend; broader blend-family morphology discussed
2017 · Efficient and Selective Uptake of TcO4- by a Cationic Metal-Organic Framework Material with Open Ag+ Sites
ReO4- sorbed SCU-100 crystals · Single Crystal · FT-IR recorded 4000-400 cm-1; SEM-EDS mapping on ReO4-loaded SCU-100 with 20 keV electron beam.
2017 · Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo: BiVO4 photoelectrodes
FMBV-2 / 2% Mo:BiVO4-MIL-53(Fe) · Electrode · Comparison of 2% Mo:BiVO4 and FMBV composite materials.
2017 · Efficient hydrogen production from MIL-53(Fe) catalyst-modified Mo: BiVO4 photoelectrodes
as-prepared MIL-53(Fe) powder · Powder · SEM operated at 5 kV; TEM operated at 200 kV.
2017 · Electrical semiconduction modulated by light in a cobalt and naphthalene diimide metal-organic framework
MOF-CoNDI-py-2 single-crystal four-pad device · Electrode · SEM image of four-pad MOF single-crystal device; scale bar 100 um.
2017 · Electrochemical synthesis of metal organic framework films with proton conductive property
as-prepared NENU-3 films on copper · Thin Film · Time series at 0.5, 1 and 8 h at 2.0 V.
2017 · Electrochemical synthesis of metal organic framework films with proton conductive property
as-prepared NENU-3 films on copper · Thin Film · Voltage series at 1.0, 2.0, 5.0 and 8.0 V for 2 h.
2017 · Epitaxial Growth of MOF Thin Film for Modifying the Dielectric Layer in Organic Field-Effect Transistors
PTB7-Th OFET with three-cycle HKUST-1/SiO2 dielectric layer · Electrode · PTB7-Th coated on three-cycle HKUST-1/SiO2/Si and completed OFET morphology.
2017 · Fabrication of Hierarchical Porous Metal-Organic Framework Electrode for Aqueous Asymmetric Supercapacitor
HP-UiO-66 powder · Powder · SEM on Quanta 250 FEI; TEM on JEM-2100F; thin suspension dropped on silicon slice or copper mesh.
2017 · Fabrication of Hierarchical Porous Metal-Organic Framework Electrode for Aqueous Asymmetric Supercapacitor
Zn/Zr MOFs precursor · Powder · Supplemental SEM image of the Zn/Zr MOFs precursor; rendered page scale bar is 3 um and magnification label is 50000x.
2017 · From zinc-cyanide hybrid coordination polymers to hierarchical yolk-shell structures for high-performance and ultra-stable lithium-ion batteries
YC-ZnO microspheres · Powder · Yolk-shell morphology, carbon coating, lattice fringes and elemental distribution of YC-ZnO.
2017 · From zinc-cyanide hybrid coordination polymers to hierarchical yolk-shell structures for high-performance and ultra-stable lithium-ion batteries
monodispersed ZnCP microspheres · Powder · Morphology, lattice spacing and particle-size distribution of ZnCP microspheres.
2017 · From zinc-cyanide hybrid coordination polymers to hierarchical yolk-shell structures for high-performance and ultra-stable lithium-ion batteries
ZnO microspheres · Powder · Morphology of air-calcined ZnO control microspheres.
2017 · From zinc-cyanide hybrid coordination polymers to hierarchical yolk-shell structures for high-performance and ultra-stable lithium-ion batteries
YC-ZnO electrode · Electrode · Morphological comparison of solid ZnO and YC-ZnO after the 50th cycle at 0.1 A g-1.
2017 · Giant Enhancement of Carrier Mobility in Bimetallic Coordination Polymers
Cr-BTC xerogel pressed pellet · Pellet · Morphological imaging of xerogel.
2017 · Giant Enhancement of Carrier Mobility in Bimetallic Coordination Polymers
Fe-BTC xerogel pressed pellet · Pellet · Morphological imaging of xerogel.
2017 · Giant Enhancement of Carrier Mobility in Bimetallic Coordination Polymers
Fe-BTC-Cr 1:1 xerogel pressed pellet · Pellet · FESEM, TEM and selected-area electron diffraction of bimetallic xerogel.
2017 · Hybrid metal-organic chalcogenide nanowires with electrically conductive inorganic core through diamondoid-directed assembly
As-synthesised 1ADCu needle-shaped crystals · Single Crystal · SEM on crystals lifted from interface and deposited on silicon; Au sputter coating for SEM; AFM after IPA dispersion and spin-casting.
2017 · Hybrid metal-organic chalcogenide nanowires with electrically conductive inorganic core through diamondoid-directed assembly
Ag-, Cd-, Zn- and Fe-based demonstration MOC crystals · Powder · SEM micrographs of non-copper MOC crystals and PXRD patterns of silver thiolate MOCs with different SDAs.
2017 · Hydrolytically Stable Luminescent Cationic Metal Organic Framework for Highly Sensitive and Selective Sensing of Chromate Anions in Natural Water Systems
Cr-loaded compound 1 · Single Crystal · EDS analysis and Eu/Cr elemental mapping on Cr-loaded sample of 1.
2017 · Intercatenated Coordination Polymers (ICPs) of Carboxylato Bridged Zn(II)-Isoniazid and Their Electrical Conductivity
Colourless block-shaped crystals of [Zn(INH)(succ)]n (1) · Single Crystal · FESEM images collected for compounds 1, 2, and 3.
2017 · Layer-by-Layer Assembled Conductive Metal–Organic Framework Nanofilms for Room-Temperature Chemiresistive Sensing
Cu3(HHTP)2-xC layer-by-layer thin-film series · Thin Film · Cycle-dependent film morphology and thickness characterised for Cu3(HHTP)2-xC.
2017 · Layer-by-Layer Assembled Conductive Metal–Organic Framework Nanofilms for Room-Temperature Chemiresistive Sensing
Cu3(HHTP)2 powder · Powder · Cu3(HHTP)2 powders compared before and after contact with NH3.
2017 · Lowering Band Gap of an Electroactive Metal-Organic Framework via Complementary Guest Intercalation
TTF-doped DSNDI-based MOF-74 powder · Powder · SEM-EDX data for undoped and TTF-doped MOF-74.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Co/Ni-MOF NAFLs · Nanosheet · XRD after 3000 and 5000 cycles; SEM after 5000 cycles; compared with Zn/Ni-MOF and Ni-MOF.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Co/Ni-MOF NAFLs · Nanosheet · FEI Quanta 200F field emission SEM.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Ni-MOF powder / NAFL control · Nanosheet · SEM and EDS spectrum shown in SI.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Zn/Ni-MOF NAFLs · Nanosheet · FEI Quanta 200F field emission SEM.
2017 · Novel Solid-State Solar Cell Based on Hole-Conducting MOF-Sensitizer Demonstrating Power Conversion Efficiency of 2.1%
Co-DAPV thin film on glass, 8 LbL cycles · Thin Film · Top-view and cross-sectional SEM of Co-DAPV film on glass; TEM/HRTEM/SAED of film sheets.
2017 · Novel Solid-State Solar Cell Based on Hole-Conducting MOF-Sensitizer Demonstrating Power Conversion Efficiency of 2.1%
2000 rpm TiO2/Co-DAPV device series, 5-30 LbL cycles · Electrode · Optimised photoanode cross-section and top views before/after Co-DAPV sensitisation.
2017 · Porous field-effect transistors based on a semiconductive metal-organic framework
Ni3(HITP)2-based porous FET device 1 · Electrode · Device geometry checked by cross-sectional SEM and top-view optical microscopy.
2017 · Porous field-effect transistors based on a semiconductive metal-organic framework
Free-standing Ni3(HITP)2 membrane · Thin Film · SEM used to evaluate top and bottom membrane surfaces after transfer onto silicon wafer; AFM measured top-surface roughness over 3 um x 3 um and 20 um x 20 um areas.
2017 · Shielding against Unfolding by Embedding Enzymes in Metal-Organic Frameworks via a de Novo Approach
CAT@ZIF-90 · Powder · SEM images of CAT@ZIF-90 and ZIF-90; additional SEM after 8 M urea incubation for 1, 2, 4 and 6 h.
2017 · Shielding against Unfolding by Embedding Enzymes in Metal-Organic Frameworks via a de Novo Approach
Urease@ZIF-90 · Powder · SEM image of Urease@ZIF-90.
2017 · Synthesis and structural characterization of a Cu(II)-based 1D coordination polymer and its application in Schottky devices
as-synthesised compound 1 bulk crystals/powder · Powder · FEI Inspect F50 field emission scanning electron microscope.
2017 · TCNQ-doped Cu-metal organic framework as a novel conductometric immunosensing platform for the quantification of prostate cancer antigen
48 h TCNQ-Cu3(BTC)2 SPE · Electrode · FE-SEM images of Cu3(BTC)2 and TCNQ-Cu3(BTC)2 structures.
2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers
Ag-TCNQ thin film on SAM/Au · Thin Film · Cross-sectional image of Ag-TCNQ thin film from step II; inset zoomed view.
2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers
Cu-TCNQ thin film on SAM/Au · Thin Film · Cross-sectional image of Cu-TCNQ thin film from step I; inset zoomed view.
2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers
Ag-TCNQ thin film on SAM/Au · Thin Film · Cu-TCNQ thin film morphology before AgNO3/TCNQ LbL and after 1 and 10 cycles.
2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers
Ag-TCNQ thin film on SAM/Au · Thin Film · Attempted direct Ag-TCNQ growth on SAMs with exposed -COOH, -NH2 and -SH groups.
2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers
Cu-TCNQ thin film on SAM/Au · Thin Film · Cu(OAc)2/TCNQ and CuI/TCNQ solution mixing controls; FESEM of Cu-TCNQ precipitate rods.
2017 · Ultrathin metal-organic framework array for efficient electrocatalytic water splitting
Cu-MOF/NF nanosheet sample · Electrode · Cu-MOF on nickel foam; AFM height profile and EDS spectrum.
2017 · Ultrathin metal-organic framework array for efficient electrocatalytic water splitting
NiFe-MOF/NF ultrathin nanosheet array electrode · Electrode · SEM controls for ligand-only, bulk aggregate, addition order, and 3 h/10 h intermediates.
2017 · Ultrathin metal-organic framework array for efficient electrocatalytic water splitting
NiFe-MOF/NF ultrathin nanosheet array electrode · Electrode · NiFe-MOF/NF film morphology; scale bars in Figure 2; AFM height profile for nanosheet thickness.
2017 · Ultrathin metal-organic framework array for efficient electrocatalytic water splitting
NiFe-MOF on stainless steel mesh · Electrode · Photograph and SEM of NiFe-MOF grown on stainless steel mesh.
2017 · Zinc terephthalates ZnC8H4O4 as anodes for lithium ion batteries
as-synthesised ZnTPA.2H2O powder · Powder · FEI NanoSEM 430 SEM and FEI TecnaiF20 TEM.
2016 · Electrochemical oxygen reduction catalysed by Ni3 (hexaiminotriphenylene)2
Ni3(HITP)2 thin film on glassy carbon electrode · Electrode · SEM at 10 kV and 200k magnification before and after ORR on GC and ITO electrodes.
2016 · Facile formation of a nanostructured NiP2@C material for advanced lithium-ion battery anode using adsorption property of metal-organic framework
as-synthesised Ni-MOF-74 nanoparticles · Powder · as-synthesised Ni-MOF-74 nanoparticles
2016 · Facile formation of a nanostructured NiP2@C material for advanced lithium-ion battery anode using adsorption property of metal-organic framework
NiP2@C electrode after full charge · Electrode · electrodes after full discharge to 0.01 V at fourth cycle and full charge to 2.5 V at fifth cycle
2016 · Facile formation of a nanostructured NiP2@C material for advanced lithium-ion battery anode using adsorption property of metal-organic framework
as-synthesised nanostructured NiP2@C nanocomposite · Powder · as-synthesised NiP2@C powder; N2 sorption at 77 K
2016 · Hollow Cobalt-Based Bimetallic Sulfide Polyhedra for Efficient All-pH-Value Electrochemical and Photocatalytic Hydrogen Evolution
Zn0.30Co2.70-MOF · Powder · As-synthesised MCo-MOFs compared with Co-MOF; SEM morphology inspected.
2016 · Hollow Cobalt-Based Bimetallic Sulfide Polyhedra for Efficient All-pH-Value Electrochemical and Photocatalytic Hydrogen Evolution
hollow Zn0.30Co2.70S4 · Powder · Hollow sulphide morphology, spinel phase, shell thickness, particle shell nanostructure and EELS distribution.
2016 · In-situ Growth of Ultrathin ZIF-67 Nanosheets on Conductive Ti@TiO2/CdS Substrate for High-efficient Electrochemical Catalysis
Ti@TiO2/CdS/ZIF-67 electrode · Electrode · FESEM images of Ti@TiO2/CdS/ZIF-67 electrode.
2016 · In-situ Growth of Ultrathin ZIF-67 Nanosheets on Conductive Ti@TiO2/CdS Substrate for High-efficient Electrochemical Catalysis
Ti@TiO2 nanowire substrate · Electrode · FESEM images of Ti@TiO2 electrodes.
2016 · Measuring and Reporting Electrical Conductivity in Metal-Organic Frameworks: Cd2(TTFTB) as a Case Study
Pressed pellet, wire-paste cuboid · Pellet · Leo Supra 55VP FEG SEM, InLens detector, 3 keV.
2016 · Metal-organic framework nanomaterials as novel signal probes for electron transfer mediated ultrasensitive electrochemical immunoassay
Au-MOFs-Ab2 signal nanoprobe · Powder · Ab2-modified MOFs imaged before and after negative voltage scanning.
2016 · Modulating the electrical conductivity of metal-organic framework films with intercalated guest π-systems
Pristine BMOF film on ZnO · Thin Film · morphology and thickness of ZnO and BMOF/ZnO films before and after guest doping
2016 · Novel CoS2 embedded carbon nanocages by direct sulfurizing metal-organic frameworks for dye-sensitized solar cells
CoS2_4 h CE · Electrode · SEM comparison of sulfurisation-time series before and after annealing
2016 · Novel CoS2 embedded carbon nanocages by direct sulfurizing metal-organic frameworks for dye-sensitized solar cells
as-prepared ZIF-67 · Powder · FEI Quanta 3D FEG SEM; morphology of as-prepared ZIF-67 template
2015 · A porous proton-relaying metal-organic framework material that accelerates electrochemical hydrogen evolution
NU-1000_Ni-S · Electrode · Top-view and cross-sectional SEM of NU-1000_Ni-S electrode after 2 min Ni-S deposition.
2015 · A two-dimensional π-d conjugated coordination polymer with extremely high electrical conductivity and ambipolar transport behaviour
General Cu-BHT thin-film samples · Thin Film · SEM on transferred films on conductive silicon with several-nanometre Pt coating; Hitachi S4800 SEM at 5 kV; AFM tapping mode with NanoScope IIIa.
2015 · Benign preparation of metal–organic frameworks of trimesic acid and Cu, Co or Ni for potential sensor applications
TMA-Co(II) powder · Powder · JEOL JSM-5600 SEM at 20 kV; digital photographs and corresponding SEM images shown.
2015 · Benign preparation of metal–organic frameworks of trimesic acid and Cu, Co or Ni for potential sensor applications
TMA-Cu(II) powder · Powder · JEOL JSM-5600 SEM at 20 kV; digital photographs and corresponding SEM images shown.
2015 · Benign preparation of metal–organic frameworks of trimesic acid and Cu, Co or Ni for potential sensor applications
TMA-Ni(II) powder · Powder · JEOL JSM-5600 SEM at 20 kV; digital photographs and corresponding SEM images shown.
2015 · Charge Transfer-Induced Molecular Hole Doping into Thin Film of Metal-Organic Frameworks
Pristine Co3(NDC)3 LbL film on amine-functionalised glass · Thin Film · Compared pristine Co3(NDC)3 films on glass prepared by DB and LbL techniques.
2015 · Chemiresistive Sensor Arrays from Conductive 2D Metal-Organic Frameworks
Drop-cast MOF 1-3 chemiresistor array · Electrode · Zeiss Ultra55 SEM with EDS detector, operating voltage 5 keV.
2015 · Confinement of single polysilane chains in coordination nanospaces
1a-PMPrS powder composite, 30 wt percent PMPrS · Powder · SEM using Hitachi S-3000N at 20 kV; samples on conducting carbon tape and Pt-coated.
2015 · Confinement of single polysilane chains in coordination nanospaces
1b-PMPrS powder composite, 30 wt percent PMPrS · Powder · SEM using Hitachi S-3000N at 20 kV; samples on conducting carbon tape and Pt-coated.
2015 · Cu3(hexaiminotriphenylene)2: An electrically conductive 2D metal-organic framework for chemiresistive sensing
Cu3(HITP)2 film drop-cast on ITO-coated glass · Thin Film · SEM images at various magnifications for Cu3(HITP)2 drop-cast onto ITO glass.
2015 · Effect of solvent on the perovskite thin film morphology and crystallinity
DMF-derived MAPbI3 film on mesoporous TiO2 · Thin Film · Surface and cross-section imaging of DMF-derived film on mesoporous TiO2.
2015 · Effect of solvent on the perovskite thin film morphology and crystallinity
GBL-derived MAPbI3 film on mesoporous TiO2 · Thin Film · Surface and cross-section imaging of GBL-derived film on mesoporous TiO2.
2015 · Facile interfacial charge transfer across hole doped cobalt-based MOFs/TiO2 nano-hybrids making MOFs light harvesting active layers in solar cells
Pristine Co-BDC LBL film on amine-functionalised glass · Thin Film · LBL film on amine-functionalised glass.
2015 · Facile interfacial charge transfer across hole doped cobalt-based MOFs/TiO2 nano-hybrids making MOFs light harvesting active layers in solar cells
Pristine Co-NDC LBL film on amine-functionalised glass · Thin Film · LBL film on amine-functionalised glass.
2015 · Facile interfacial charge transfer across hole doped cobalt-based MOFs/TiO2 nano-hybrids making MOFs light harvesting active layers in solar cells
Pristine Co-BDC/TiO2/FTO photoanode · Electrode · TiO2/FTO before and after 20 LBL cycles of Co-BDC.
2015 · Facile interfacial charge transfer across hole doped cobalt-based MOFs/TiO2 nano-hybrids making MOFs light harvesting active layers in solar cells
Pristine Co-NDC/TiO2/FTO photoanode · Electrode · TiO2/FTO before and after 20 LBL cycles of Co-NDC.
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Free-base porphyrin Zn-SURMOF 2 on Si substrate, 30-cycle spray film · Thin Film
2015 · Photoinduced Charge-Carrier Generation in Epitaxial MOF Thin Films: High Efficiency as a Result of an Indirect Electronic Band Gap?
Free-base porphyrin Zn-SURMOF 2/FTO, 300 nm · Electrode · LEO 1530 Gemini SEM at 3 to 5 kV; images for free-base and Pd films on FTO.
2015 · Thin film thermoelectric metal-organic framework with high seebeck coefficient and low thermal conductivity
Pristine Cu3(BTC)2 thin-film device on quartz · Thin Film · Cu3(BTC)2 thin films before/after TCNQ infiltration; supporting XRD plotted for HKUST-1 before and after infiltration.
2014 · Facile synthesis and characterization of trimesic acid-Cu based metal organic frameworks
TMA-Cu(SO4)2 (DIW) · Powder · JEOL JSM-5600 SEM, 20 kV operating voltage
2014 · Facile synthesis and characterization of trimesic acid-Cu based metal organic frameworks
TMA-Cu(SO4)2 (EtOH) · Powder · JEOL JSM-5600 SEM, 20 kV operating voltage
2014 · Immobilization of N-(3-aminopropyl)-imidazole through MOFs in proton conductive membrane for elevated temperature anhydrous applications
6% encapsulated MOFs membrane · Thin Film · SEM images of MOFs, MOFs>NAPI and membrane cross-sections
2014 · Pd uptake and H2S sensing by an amphoteric metal-organic framework with a soft core and rigid side arms
1a-Pd-H2 · Powder · SEM images of BFMOF-1a, 1a-PdCl2 and 1a-Pd-H2 crystal samples.
2014 · Redox control and high conductivity of nickel bis(dithiolene) complex π-nanosheet: A potential organic two-dimensional topological insulator
ox-1 single microflake van der Pauw sample · Nanosheet · SEM inspection for van der Pauw contact placement and JEOL JSM-7400FNT SEM confirmation of flat and smooth microflake textures.
2014 · Redox control and high conductivity of nickel bis(dithiolene) complex π-nanosheet: A potential organic two-dimensional topological insulator
ox-1 single microflake van der Pauw sample · Nanosheet · Home-made four-tip tungsten system under SEM; microflakes on HMDS-modified silicon wafer; measured from low to high temperatures; sample thickness 1 um by AFM.
2014 · Solvothermal preparation of an electrocatalytic metalloporphyrin MOF thin film and its redox hopping charge-transfer mechanism
CoPIZA/FTO thin film electrode · Electrode · CoPIZA/FTO held at -1.04 V or -1.45 V vs ferrocyanide for 24 h; post-electrolysis SEM and solution spectra assessed film stability.
2014 · Solvothermal preparation of an electrocatalytic metalloporphyrin MOF thin film and its redox hopping charge-transfer mechanism
CoPIZA/FTO thin film electrode · Electrode · SEM on LEO/Zeiss 1550 field-emission microscope at 5.0 kV; AFM on Veeco MultiMode in tapping mode.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Co(II)-fbpmpc coordination polymer powder · Powder · SEM at 20 kV; article states magnification x5000 in text, while figure panels display x1500.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Cu(II)-fbpmpc coordination polymer powder · Powder · SEM at 20 kV; article states magnification x5000 in text, while figure panels display x1500.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Mn(II)-fbpmpc coordination polymer powder · Powder · SEM at 20 kV; article states magnification x5000 in text, while figure panels display x1500.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Ni(II)-fbpmpc coordination polymer powder · Powder · SEM at 20 kV; article states magnification x5000 in text, while figure panels display x1500.
2014 · Tunable electrical conductivity in metal-organic framework thin-film devices
As-grown Cu3(BTC)2.xH2O thin-film device on Pt/SiO2 · Thin Film · MOF-coated device before and after TCNQ infiltration
2012 · High performance metal–organic-framework coatings obtained via thermal gradient synthesis
HKUST-1 coating on 5 cm x 5 cm copper sheet · Thin Film · SEM/EDX on FEI Quanta 400 MkII; top-down images under high vacuum; cross sections in environmental mode, H2O 100 Pa.
2012 · Porous, conductive metal-triazolates and their structural elucidation by the charge-flipping method
MET-6 (Zn) microcrystalline powder · Powder · MET-2 and MET-6 powders dispersed on sticky carbon, gold coated at 70 mTorr Ar for 30 s, 15 mA; JEOL JSM-6700, SEI/LEI, 7 kV.
2012 · Porous, conductive metal-triazolates and their structural elucidation by the charge-flipping method
MET-3 freshly prepared pressed pellet · Pellet · SEM image of MET-3 pellet used for conductivity measurements; figure caption reports 30000x.
2010 · Conductivity, doping, and redox chemistry of a microporous dithiolene-based metal-organic framework
As-synthesised solvated Cu[Ni(pdt)2] powder · Powder · SEM comparison of particles formed by rapid stirring of reagents.
2010 · Highly conducting two-dimensional copper(i) 4-hydroxythiophenolate network
drop-cast CuAT thin film on bottom-contact FET · Thin Film · SEM image of bottom-contact FET fabricated with drop-cast CuAT film.
2010 · Highly conducting two-dimensional copper(i) 4-hydroxythiophenolate network
drop-cast CuHT crystallites on bottom-contact FET · Thin Film · Top-view SEM of CuHT platy crystallites on bottom-contact FET.
2009 · Semiconducting neutral microstructures fabricated by coordinative self-assembly of intramolecular charge-transfer tetrathiafulvalene derivatives
TTF-Pb coordination-polymer microwires · Powder · Microwire precipitate imaged by SEM/TEM; SAED used for phase assessment and EDX/elemental analysis used for composition.
2009 · Semiconducting neutral microstructures fabricated by coordinative self-assembly of intramolecular charge-transfer tetrathiafulvalene derivatives
TTF-Zn spherical coordination-polymer particles · Powder · Spherical coordination-polymer particles imaged by SEM/TEM; EDX and FT-IR used for composition assignment.
No mapped measurement matches these filters.
These are the exact source-preserving method strings consolidated by this technique group.
| Raw method label | Mapped measurements |
|---|---|
| SEM | 113 |
| Scanning electron microscopy (SEM) | 55 |
| SEM and TEM | 49 |
| Scanning electron microscopy | 42 |
| SEM and AFM | 19 |
| FE-SEM | 19 |
| FESEM | 18 |
| SEM particle-size analysis | 17 |
| SEM image analysis; Feret diameter | 17 |
| Scanning electron microscopy (SEM, Hitachi S-4800) | 16 |
| FE-SEM and TEM | 12 |
| SEM and EDS mapping | 11 |
| SEM, TEM and HRTEM | 10 |
| SEM and HRTEM | 9 |
| SEM top-view and cross-section | 8 |
| SEM and XRD | 8 |
| SEM, TEM and EDS mapping | 7 |
| scanning electron microscopy | 6 |
| SEM-EDX elemental mapping | 6 |
| Field-emission scanning electron microscopy (FE-SEM, Nova NanoSEM 230) | 6 |
| SEM; HRTEM; SAED; elemental mapping | 6 |
| SEM/TEM/EDS elemental mapping and XRD | 6 |
| SEM, TEM and HR-TEM | 5 |
| SEM and elemental mapping | 5 |
| SEM, TEM, HRTEM and EDS mapping | 5 |
| scanning electron microscopy (SEM) | 5 |
| SEM with EDS | 5 |
| TEM and SEM | 5 |
| SEM image particle-size analysis | 5 |
| SEM and EDS | 4 |
| SEM and EDX | 4 |
| SEM and EDS elemental mapping | 4 |
| SEM-EDX | 4 |
| SEM, HRTEM and EDS mapping | 4 |
| PXRD, SEM/TEM/HR-TEM, EDS, ATR-IR, XPS and elemental analysis | 4 |
| SEM with EDS elemental mapping | 4 |
| SEM (Hitachi S-4700) | 4 |
| SEM and HR-TEM with FFT | 3 |
| SEM/EDS | 3 |
| SEM and HR-TEM/EDS | 3 |
| SEM-EDS elemental mapping and elemental analysis. | 3 |
| Scanning electron microscopy morphology and size-distribution analysis. | 3 |
| SEM and HRTEM imaging | 3 |
| SEM, EDX and HRTEM/FFT | 3 |
| FE-SEM top-view and cross-sectional imaging | 3 |
| SEM and TEM morphology | 3 |
| SEM imaging | 3 |
| SEM, TEM, HR-TEM | 3 |
| GIWAXS, SEM, TEM and AFM | 3 |
| TEM/SEM | 3 |
| Field-emission scanning electron microscopy | 3 |
| SEM using Zeiss Supra 55Vp FEG SEM with 14 kV operating voltage and in-lens secondary electron detector. | 3 |
| SEM, TEM, HRTEM | 3 |
| SEM, EDX mapping, HRTEM | 3 |
| SEM particle size analysis | 3 |
| SEM-EDX elemental analysis | 3 |
| FE-SEM and EDS mapping | 3 |
| SEM, TEM, HR-TEM, SAED, elemental mapping, XRD | 3 |
| SEM, TEM, HR-TEM, and EDX elemental mapping | 3 |
| AFM and SEM | 3 |
| SEM, TEM and SAED | 3 |
| SEM and cross-sectional SEM | 3 |
| SEM, TEM, and EDS elemental mapping | 3 |
| SEM, TEM and elemental mapping | 3 |
| FESEM, TEM, elemental mapping | 3 |
| SEM/EDS on compressed polymer pellet | 3 |
| thin-film X-ray diffraction and SEM cross-section/top-view microscopy | 3 |
| SEM/TEM/EDS as applicable | 3 |
| FESEM, elemental mapping, TEM | 3 |
| SEM/HRTEM/EDX | 3 |
| Scanning electron microscopy (SEM), HITACHI S-4800 | 3 |
| SEM, TEM and EDX mapping | 2 |
| SEM top-view and cross-section imaging | 2 |
| SEM cross-section imaging | 2 |
| Field-emission SEM | 2 |
| PXRD and SEM | 2 |
| PXRD, TEM, SAED, AC-HRTEM, SEM and AFM. | 2 |
| SEM-EDX elemental mapping and spectrum | 2 |
| SEM-EDX mapping | 2 |
| FESEM and EDS elemental mapping/spectrum | 2 |
| GIWAXS and SEM | 2 |
| GIWAXS, SEM and AFM | 2 |
| SEM and SEM-EDX mapping | 2 |
| FESEM top-view and cross-sectional imaging | 2 |
| SEM with EDX mapping | 2 |
| SEM, TEM, HRTEM, EDS mapping | 2 |
| SEM, TEM, and HR-TEM | 2 |
| Scanning electron microscopy (SEM; ZEISS Sigma300) | 2 |
| FESEM and TEM | 2 |
| FESEM micrographs | 2 |
| SEM, TEM, HRTEM and SAED | 2 |
| SEM, TEM, HAADF-STEM and EDS mapping | 2 |
| Field emission scanning electron microscopy | 2 |
| Energy dispersive spectroscopy (EDS) elemental mapping with SEM image | 2 |
| Field-emission scanning electron microscopy using Carl Zeiss SUPRA-55. | 2 |
| SEM and X-ray diffraction of MOF-sensitised TiO2 photoanode | 2 |
| SEM, TEM, and EDS | 2 |
| SEM on FTO-coated glass film | 2 |
| HRSEM | 2 |
| SEM SU1510 | 2 |
| Scanning electron microscopy (SEM, HITACHI S-4800) | 2 |
| Field-emission SEM and cross-section SEM | 2 |
| Cross-sectional SEM | 2 |
| SEM and thin-film XRD | 2 |
| SEM and XRD growth series | 2 |
| SEM-EDS figure-inset quantification | 2 |
| FE-SEM top-view and cross-section imaging | 2 |
| SEM-EDX, JEOL JES-FA200 scanning electron microscope with EDX setup | 2 |
| FESEM with EDX elemental mapping | 2 |
| SEM/EDX, Raman and PXRD | 2 |
| SEM, TEM, HRTEM, EDX mapping | 2 |
| SEM/TEM/elemental mapping for monometallic controls | 2 |
| SEM, HRTEM and SAED | 2 |
| Scanning electron microscopy (SEM, JSM-5900LV) | 2 |
| SEM and TEM/HRTEM | 2 |
| SEM after discharge | 2 |
| Scanning electron microscopy (Hitachi S-4200) | 2 |
| SEM with EDS mapping | 2 |
| SEM (Quanta 450 FEG) | 2 |
| cross-sectional FESEM | 2 |
| PXRD with Williamson-Hall analysis; SEM morphology | 2 |
| Field-emission scanning electron microscopy (FESEM) | 2 |
| FESEM, EDS mapping, TEM and AFM | 2 |
| SEM/TEM/STEM particle sizing | 2 |
| SEM using Hitachi S-4800 | 2 |
| GIXRD and SEM | 2 |
| PXRD, Pawley refinement, SEM and HRTEM | 2 |
| SEM elemental mapping | 2 |
| Scanning electron microscopy (SEM), HITACHI S4300 | 2 |
| FE-SEM, HR-TEM, SAED and TEM-EDS | 2 |
| TEM, FE-SEM, STEM-EDS | 2 |
| SEM and ImageJ particle size analysis | 2 |
| FESEM and HRTEM | 2 |
| SEM cross-section, surface SEM size histogram and EDS spectrum | 2 |
| SEM and TEM morphology characterisation | 2 |
| Cross-section SEM, TEM, HRTEM, selected-area electron diffraction and PXRD with DFT comparison | 1 |
| XPS, SEM-EDS, ATR-FTIR and elemental analysis | 1 |
| HRTEM, TEM and SEM | 1 |
| SEM, AFM and TEM imaging of exfoliated flakes. | 1 |
| optical microscopy and SEM | 1 |
| SEM, AFM/HRAFM, TEM and GIWAXS | 1 |
| Cross-sectional SEM and optical microscopy | 1 |
| post-OER/ORR XRD and SEM | 1 |
| SEM and optical photographs during crystal growth | 1 |
| SEM and TEM with elemental mapping | 1 |
| SEM, TEM and EDX | 1 |
| SEM/TEM particle-size analysis | 1 |
| SEM with EDX; Hitachi TM3000 SEM | 1 |
| SEM and synchrotron micro-XRD of Ar-plasma-etched line patterns | 1 |
| SEM, AFM and confocal microscopy of patterned Cu-BHT features | 1 |
| FTIR, TGA, XPS, SEM and SEM-EDS | 1 |
| FE-SEM, TEM, AFM and EDX mapping | 1 |
| SEM and AC-HRTEM/SAED. | 1 |
| FESEM, TEM, STEM, SAED, and EDS elemental mapping | 1 |
| FESEM, TEM and SAED | 1 |
| SEM and EDX with JEOL JSM-7900F and ULTIM Max 170 detector | 1 |
| SEM/EDS phase mapping and FTIR comparison with Co-CAT-1 powder | 1 |
| SEM/optical microscopy of synthesis-control morphologies | 1 |
| SEM and optical microscopy of growth at 0.5, 1, 3 and 12 h | 1 |
| SEM, optical microscopy, AFM thickness profiling, manual optical crystal counting | 1 |
| SEM, HR-TEM and AFM | 1 |
| SEM, OM, AFM, TEM | 1 |
| ATR-FTIR, Raman, XPS, SEM-EDX, XANES, EXAFS, UV-vis | 1 |
| SEM/TEM/SAED | 1 |
| PXRD and SEM after solvent immersion | 1 |
| FE-SEM with EDS mapping | 1 |
| SEM and TEM morphology imaging | 1 |
| SEM, EDS and AFM for Cu-MOF/NF | 1 |
| Controlled-growth SEM series | 1 |
| Optical microscopy, SEM, TEM, HRTEM, SAED and AFM | 1 |
| SEM and photograph for NiFe-MOF/stainless steel mesh | 1 |
| Field-emission scanning electron microscopy with Zeiss Ultra55 or Zeiss Supra55VP, InLens detector | 1 |
| Optical microscopy and SEM | 1 |
| SEM and optical microscopy | 1 |
| SEM, JEOL JSM-6500F | 1 |
| Photographs, SEM cross-section and EDS analysis for PAA-transferred film | 1 |
| SEM of PMMA-transferred films | 1 |
| RDE three-electrode OER/ORR LSV, CV, EIS and chronoamperometry; post-test SEM/TEM/PXRD/FT-IR | 1 |
| Photographs and SEM | 1 |
| FESEM, TEM, HRTEM, SAED and EDS mapping | 1 |
| SEM and EDS microanalysis | 1 |
| AFM top and edge views; SEM imaging | 1 |
| SEM (SU8010) top-view and cross-sectional imaging | 1 |
| SEM-EDS elemental composition | 1 |
| Scanning electron microscopy and optical imaging | 1 |
| HR-TEM, SEM, and SEM-EDS elemental mapping | 1 |
| TEM, SEM, and EDS mapping | 1 |
| pi-A isotherm, BAM, SEM and AFM | 1 |
| SEM surface imaging | 1 |
| SEM cross-sectional thickness measurement | 1 |
| optical photography and SEM/EDX mapping | 1 |
| SEM imaging of FET electrode/fibre arrays | 1 |
| SEM and HAADF-STEM with elemental mapping | 1 |
| FESEM, TEM, HRTEM, SAED and HAADF-STEM EDS mapping | 1 |
| Supplementary SEM and EDS | 1 |
| SEM, TEM, HR-TEM, cryo-EM, FFT | 1 |
| Optical microscopy and scanning electron microscopy | 1 |
| SEM, AFM, HRTEM, SAED | 1 |
| PXRD, SEM, ICP-OES, N2 sorption, DFT pore size distribution | 1 |
| SEM and powder XRD | 1 |
| PXRD and SEM characterization of control cMOFs | 1 |
| cross-section SEM and AFM/thickness analysis | 1 |
| SEM and PXRD before and after NH3 contact. | 1 |
| SEM, AFM, UV/Vis, TEM and SAED. | 1 |
| SEM, TEM, HRTEM, and TEM-EDS | 1 |
| SEM, top-view and side-view | 1 |
| SEM and TEM of Pt@Ni3(HITP)2 core-shell nanowires | 1 |
| SEM and TEM of Ni3(HITP)2 nanotube network | 1 |
| SEM and optical microscopy of films on different substrates | 1 |
| Continuous GCD cycling stability and post-cycling SEM/EIS/XPS/XRD/FTIR checks | 1 |
| PXRD and SEM/element mapping for Ag4TXHQ series | 1 |
| SEM, EDX, HRTEM/FFT | 1 |
| SEM and PXRD | 1 |
| SEM, cross-sectional SEM, HRTEM, STEM-EDS | 1 |
| AFM, SEM, TEM | 1 |
| SEM, TEM, EDS mapping, and powder XRD | 1 |
| SEM and GIWAXS | 1 |
| XRD detector scan, SEM, AFM | 1 |
| Scanning electron microscopy. | 1 |
| Supplementary SEM | 1 |
| SEM, TEM, HAADF-STEM and STEM-EDS mapping | 1 |
| SEM before/after negative voltage scanning | 1 |
| FE-SEM with EDS elemental analysis | 1 |
| SEM, optical microscopy, FE-TEM, and STEM-EDS | 1 |
| field-emission scanning electron microscopy (FE-SEM; JSM-7800F, JEOL) | 1 |
| TEM and SEM-EDS | 1 |
| SEM, TEM, HAADF-STEM, HRTEM | 1 |
| SEM-EDS and elemental mapping | 1 |
| FE-SEM, TEM, HR-TEM, EDS mapping | 1 |
| Post-reaction SEM, EDS mapping, and high-resolution XPS | 1 |
| Field emission scanning electron microscopy (FE-SEM) | 1 |
| AFM and SEM surface imaging; profilometry for PTB7-Th thickness | 1 |
| SEM and high-resolution TEM | 1 |
| Post-cycling XRD and SEM | 1 |
| FESEM, TEM, HRTEM and EDS elemental mapping | 1 |
| SEM and TEM imaging of CNF@Ni-HITP-10 and CNF@Ni-HITP-15 nanofibers | 1 |
| TEM at 200 kV and FEG SEM at 3 kV | 1 |
| SEM, optical microscopy, and AFM | 1 |
| SEM, TEM and AFM | 1 |
| SEM pore diameter distribution | 1 |
| SEM, EDX and EDX mapping | 1 |
| FESEM / particle-size distribution | 1 |
| FE-SEM, TEM, LD-HRTEM, FFT, SEM-EDX | 1 |
| SEM cross-section and top-view imaging | 1 |
| SEM top-view imaging and nanorod size distribution across substrates | 1 |
| Post-OER SEM, XPS, and Raman | 1 |
| Cross-section SEM and AFM of free-base Zn-SURMOF 2 on Si substrate. | 1 |
| Scanning electron microscopy, top view and cross-section | 1 |
| SEM, TEM, HRTEM, AFM, SEM-EDS | 1 |
| acid/base chemical stability by FT-IR and SEM | 1 |
| SEM, TEM, HRTEM, AFM and SEM elemental mapping | 1 |
| FT-IR and SEM-EDS mapping after ReO4- exchange | 1 |
| Post-NRA SEM, XRD and XPS stability characterisation | 1 |
| SEM, TEM, HRTEM and EDX mapping. | 1 |
| XPS and SEM-EDX/EDS elemental analysis. | 1 |
| SEM before and after CO2 capture/release cycling | 1 |
| SEM, TEM, HR-TEM and EDS mapping | 1 |
| SEM and XRD of perovskite films | 1 |
| SEM, TEM, HRTEM and TEM elemental mapping | 1 |
| PXRD Scherrer analysis and SEM particle sizing | 1 |
| PXRD Scherrer analysis and selected SEM particle sizing | 1 |
| SEM particle sizing and PXRD Scherrer analysis | 1 |
| EDX and SEM | 1 |
| Comparative SEM and FET electrical measurements for scooping-up and drop-casting controls | 1 |
| SEM, HRSEM, cross-sectional SEM, TEM, HRTEM, and elemental mapping | 1 |
| SEM, TEM, high-resolution TEM and SAED | 1 |
| SEM cross-sectional and top-view imaging | 1 |
| SEM, JEOL JSM-6700F NT | 1 |
| SEM, DF-STEM, elemental mapping, TEM and HRTEM | 1 |
| SEM and TEM inset imaging | 1 |
| FESEM, HR-TEM, SAED and elemental mapping | 1 |
| SEM, TEM, HR-TEM, SAED, HAADF-STEM/EDX mapping | 1 |
| FE-SEM, TEM, large-magnification TEM, STEM-EDS | 1 |
| post-cycling SEM and EDS | 1 |
| SEM, TEM and high-resolution TEM | 1 |
| SEM, TEM, AFM and HAADF-STEM/EDS | 1 |
| FESEM, TEM and HRTEM | 1 |
| FESEM after cycling | 1 |
| SEM, HRTEM and EDS elemental mapping | 1 |
| SEM, XT30 ESEM-TMP PHILIP | 1 |
| SEM-EDS (Hitachi High Technologies S-5500) | 1 |
| SEM, XRD, Williamson-Hall analysis and UV-vis/Tauc | 1 |
| SEM cross-sectional imaging | 1 |
| FE-SEM and optical imaging | 1 |
| FE-SEM, HRTEM, SAED, STEM-EDS mapping | 1 |
| EDS mapping and EDX spectroscopy with FE-SEM | 1 |
| SEM, TEM, EDS mapping and HRTEM | 1 |
| Optical microscopy and SEM/EDX | 1 |
| FESEM and EDX elemental mapping | 1 |
| SEM and powder XRD of Co-MOF precursor | 1 |
| FESEM, TEM, HRTEM, electron diffraction and AFM | 1 |
| FESEM and HR-TEM | 1 |
| SEM/EDS; FEI Quanta 200FEG, 30 kV, 100 s spectrum acquisition | 1 |
| SEM image of Zn/Zr MOFs precursor | 1 |
| SEM, TEM, HRTEM, SAED, EDS mapping | 1 |
| FESEM elemental mapping and EDS | 1 |
| TEM and FESEM, JEOL JSM-5410LV | 1 |
| SEM and SEM-EDX elemental mapping | 1 |
| SEM, HRTEM, and elemental mapping | 1 |
| SEM, AFM, TEM, HRTEM and SAED | 1 |
| SEM (JSM-6701F, 5 kV), TEM (FEI Tecnai G2 F20, 200 kV), and EDS elemental mapping | 1 |
| PXRD, FT-IR, solid-state 13C NMR, XPS, SEM/TEM | 1 |
| SEM, TEM, STEM/EDS mapping | 1 |
| Post-H2S XPS, Cu-AES, SEM-EDX, XRD, and FTIR | 1 |
| SEM after Li plating | 1 |
| SEM, TEM, EDX/EELS mapping | 1 |
| SEM after Zn plating | 1 |
| SEM, EDS and HRTEM | 1 |
| SEM cross-section | 1 |
| Scanning electron microscopy of conductivity pellet | 1 |
| SEM, EDS elemental mapping and EDS pattern | 1 |
| SEM/TEM/HRTEM | 1 |
| PXRD, SEM, SEM-EDX, ICP-OES, cross-sectional SEM, XPS | 1 |
| Post-electrolysis PXRD, SEM, and SEM-EDX | 1 |
| SEM, SEM-EDX mapping, and ICP-OES | 1 |
| Scanning electron microscopy (FEI Quanta 650 SEM) | 1 |
| SEM, TEM, HR-TEM, STEM | 1 |
| SEM particle-size analysis over more than 150 particles; FE-SEM Magellan 400 XHR | 1 |
| HR-SEM and AFM | 1 |
| Planar FE-SEM | 1 |
| FE-SEM cross-sectional imaging, Hitachi S 4700 operated at 5 kV | 1 |
| Top-down planar FE-SEM | 1 |
| SEM, TEM, XRD, N2 BET | 1 |
| SEM, TEM, XRD | 1 |
| SEM, TEM, XRD, Raman spectroscopy | 1 |
| Scanning electron microscopy (SU5000, Hitachi) | 1 |
| FESEM and EDS / EDS mapping | 1 |
| SEM, cross-section SEM, AFM, TEM/HRTEM | 1 |
| Water immersion stability test with XRD and SEM | 1 |
| Optical microscopy and SEM, including cross-sectional SEM | 1 |
| AFM height distribution and cross-sectional SEM | 1 |
| Post-reaction XRD, SEM, HRTEM, HAADF-STEM, EDS mapping and XPS | 1 |
| SEM-controlled four-probe van der Pauw electrical conductivity | 1 |
| Post-cycling SEM, TEM, PXRD and XPS | 1 |
| SEM, HRTEM and SEM-EDX mapping | 1 |
| EDS/EDX elemental analysis and mapping coupled with FESEM | 1 |
| SEM/TEM and STEM-EDS mapping for SI control samples | 1 |
| SEM, TEM, STEM-EDS elemental mapping | 1 |
| SEM/TEM/HRTEM/EDS | 1 |
| Photo imaging, SEM, and XRD confirmation of patterned oriented Cu3(BTC)2 | 1 |
| FE-SEM top-view and cross-section | 1 |
| Photo imaging and SEM after TCNQ introduction | 1 |
| controlled potential electrolysis followed by SEM and solution UV-vis inspection | 1 |
| SEM and EDS elemental mapping/content distribution | 1 |
| SEM with elemental mapping spectroscopy | 1 |
| SEM, TEM, HR-TEM, AC-HAADF-STEM | 1 |
| SEM after short-time Li deposition | 1 |
| SEM and cross-section SEM of cycled Li | 1 |
| Photograph, SEM, cross-section SEM, contact angle | 1 |
| SEM and powder X-ray diffraction | 1 |
| ex situ XRD, SEM, TEM/HRTEM, and SAED | 1 |
| SEM, PXRD, and N2 sorption/BJH porosity | 1 |
| field-emission scanning electron microscopy (FESEM) | 1 |
| Field-emission scanning electron microscopy (FE-SEM) | 1 |
| SEM with EDS element mapping | 1 |
| FE-SEM, TEM, HR-TEM, SAED, and EDX elemental mapping | 1 |
| SEM and TEM-EDS mapping | 1 |
| SEM, AFM and water contact angle | 1 |
| FE-SEM and TEM/HRTEM | 1 |
| FE-SEM, TEM, HRTEM and SAED | 1 |
| Post-cycling FTIR, PXRD, SEM, and TEM | 1 |
| Supplemental XRD, SEM, and TEM-SAED on dried/cycled Co1/2Fe1/2-MOF electrode materials | 1 |
| SEM, TEM, TEM-SAED, and EDX mapping | 1 |
| FESEM, TEM, HRTEM and EDS mapping | 1 |
| SEM, TEM, XRD, STEM-EDX | 1 |
| Chronopotentiometry stability test with post-test SEM, EDX and XRD | 1 |
| SI XRD, FT-IR, SEM and TEM rendered-page review | 1 |
| Field-emission SEM (FE-CHEM, Quaint 250FEG) | 1 |
| AFM tapping mode and SEM | 1 |
| Post-sensing TEM/SEM/XPS and two-week sensor response retention | 1 |
| SEM cross-section and tapping-mode AFM | 1 |
| SEM-EDX and ICP-MS | 1 |
| FIB-SEM cross-section | 1 |
| SEM elemental mapping and EDS | 1 |
| SEM and energy-dispersive X-ray elemental mapping | 1 |
| SEM after HER | 1 |
| SEM and Raman after acid soaking | 1 |
| FE-SEM imaging | 1 |
| FE-SEM, SEM-EDS mapping, and TEM elemental mapping | 1 |
| DLS and SEM | 1 |
| Powder XRD and FE-SEM | 1 |
| SEM, TEM, EELS elemental mapping, and powder XRD | 1 |
| XRD, FTIR, SEM, TEM/EDS, TGA, ICP, XPS, Raman, BET | 1 |
| Ex-situ XRD, SEM, and dissolution observation of cycled electrodes | 1 |
| Scanning electron microscopy using TESCAN VEGA3; SE and BSE detectors | 1 |
| Cryo-EM and SEM | 1 |
| SEM SU1510; TEM JEOL2100; HRTEM; elemental mapping | 1 |
| SEM and EDX elemental mapping | 1 |
| SEM image analysis | 1 |
| SEM-EDS quantitative elemental analysis and mapping | 1 |
| SEM, TEM, XRD and FTIR | 1 |
| SEM, TEM, HRTEM, SAED, HAADF-STEM and EDS mapping | 1 |
| SEM/TEM and XRD during sulfidation evolution | 1 |
| Grazing-incidence PXRD, SEM, and XPS | 1 |
| SEM/TEM/EDS | 1 |
| Grazing-incidence X-ray diffraction and scanning electron microscopy | 1 |
| SEM, AFM, KPFM and C-AFM | 1 |
| Water contact angle and high-humidity SEM ageing | 1 |
| SEM, cross-sectional SEM, TEM and elemental mapping | 1 |
| SEM with EDX | 1 |
| SEM, HR-TEM, STEM-EDS elemental mapping | 1 |
| SEM (Sigma 500 V P) and EDS elemental mapping | 1 |
| Qualitative porosity inferred from MOF structure/SEM; no BET measurement reported | 1 |
| SEM; Hitachi S-4800 / JEOL JEM-1011 noted in SI | 1 |
| SEM, EDS mapping, TEM and HRTEM | 1 |
| FESEM, TEM, STEM-EDS elemental mapping | 1 |
| Scanning electron microscopy (SEM), Hitachi SU8000 | 1 |
| SEM, TEM, EDS, AFM and optical microscopy | 1 |
| FTIR, PXRD, TEM/HRTEM, SAED, AFM, SEM, Tyndall effect | 1 |
| FTIR, PXRD, SEM, TEM, AFM, Tyndall effect, ICP-AES | 1 |
| PXRD, ATR-FTIR, SEM, TEM/HRTEM, EDX | 1 |
| SEM, TEM, HRTEM, SAED, EDX | 1 |
| FESEM surface/cross-section imaging and EDS elemental mapping | 1 |
| Steady-state/time-resolved photoluminescence and top-view SEM | 1 |
| SEM, TEM, AFM, HRTEM, EDX mapping | 1 |
| SEM, TEM, HRTEM and HAADF-STEM elemental mapping | 1 |
| SEM, TEM, HRTEM and particle size analysis | 1 |
| SEM after electrochemical cycling | 1 |
| XRD, FT-IR and SEM after GA/DNA modification | 1 |
| SEM, TEM, HAADF-STEM elemental mapping | 1 |
| SEM and GCD for 0.25/0.75 variants | 1 |
| PXRD with BRUKER D8 Venture and SEM with Magellan 400 XHR | 1 |
| Field emission scanning electron microscopy (FESEM) | 1 |
| SEM and cross-section SEM | 1 |
| SEM (Zeiss Mertin Compact) | 1 |
| repeatability, fabrication reproducibility, and post-reaction SEM stability | 1 |
| SEM, XRD and FT-IR | 1 |
| SEM, EDX, XRD and FT-IR | 1 |
| photography, SEM and XRD | 1 |
| SEM and HAADF-STEM | 1 |
| SEM/TEM image-inferred surface porosity | 1 |
| SEM, HRTEM, HAADF-STEM, AFM | 1 |
| FTIR, XRD, TEM, SEM, EDS and XPS survey of M23(M13.HAHATN)2 variants | 1 |
| Durability by repeated CV, chronoamperometry, post-test XRD/TEM/SEM | 1 |
| SEM, TEM, HRTEM and AFM | 1 |
| Scanning electron microscopy (Hitachi SU70) | 1 |
| SEM, TEM, selected area electron diffraction, elemental mapping | 1 |
| FESEM/EDS | 1 |
| SEM top-view and cross-sectional imaging | 1 |
| EDX using HITACHI SU8010 SEM with TEAM EDS | 1 |
| FIB-SEM cross-section and EDX mapping | 1 |
| Cross-sectional FE-SEM and stylus thickness profiler | 1 |
| XRD plus top-view and cross-section SEM | 1 |
| SEM-EDS elemental mapping and EDS spectrum | 1 |
| FE-SEM, HR-TEM, SAED and TEM elemental mapping | 1 |
| SEM, STEM-HAADF and STEM-EELS mapping | 1 |
| Post-cycling XPS and SEM | 1 |
| top-view SEM | 1 |
| Field emission scanning electron microscopy (FE-SEM, Hitachi S4300 SE/N) | 1 |
| SEM, TEM, HRTEM, EDX and elemental mapping | 1 |
| Stylus profilometry and AFM/SEM morphology series | 1 |
| SEM, TEM/STEM and EDS mapping | 1 |
| Field emission scanning electron microscopy, TESCAN MIRA3 XMU | 1 |
| TEM, HRTEM, SEM | 1 |
| TEM, HRTEM, SAED, SEM | 1 |
| IR, TG, PXRD, SEM and EDS mapping | 1 |
| PXRD and FE-SEM of spent catalyst | 1 |
| PI membrane permeability assay, DCFH-DA ROS assay, CAT activity assay, SEM bacteria morphology, ESR | 1 |
| ICP-MS copper release, temperature monitoring, post-operation SEM/XRD | 1 |
| SEM and XRD of Cu-HHTP NP-Cu | 1 |
| SEM, TEM, HRTEM, SAED, STEM-EDS | 1 |
| Post-BA-oxidation IR, PXRD, SEM, TEM, EDX, XPS, HRTEM and SAED | 1 |
| Post-ORR SEM, XRD and XPS | 1 |
| SEM, TEM and HAADF-STEM | 1 |
| SEM; TEM mentioned in SI | 1 |
| SEM from Supporting Information | 1 |
| SEM, TEM, SAED, EDX and elemental analysis | 1 |
| SEM, TEM, SAED, EDX and FT-IR | 1 |
| SEM, TEM and EDS/EDX imaging of Ce-MoF, Ce-MoF@HA, Ce-MoF@HA/Ag and Au NPs | 1 |
| Ex situ XRD and SEM after discharge and recharge | 1 |
| SEM after 10 discharge/charge cycles | 1 |
| SEM, TEM, HRTEM, STEM-EDS mapping | 1 |
| SEM and ImageJ particle-size analysis | 1 |
| SEM/ImageJ individual particle-size statistics | 1 |
| SEM, TEM, HR-TEM, SAED and elemental mapping | 1 |
| Field-emission scanning electron microscopy (FE-SEM) with EDX elemental mapping | 1 |
| AFM, SEM and EDS mapping | 1 |
| AFM and FESEM | 1 |
| XRD, SEM, HRTEM, elemental mapping, ICP, XPS | 1 |
| SEM and TEM morphology statistics | 1 |
| SEM, HRTEM, TEM elemental mapping | 1 |
| Product yield and XRD/SEM for TMAH dilution series | 1 |
| Scanning electron microscopy and SEM elemental mapping | 1 |
| TEM, HRTEM, and SEM | 1 |
| AFM (Park XE-7) and SEM | 1 |
| FESEM imaging, JEOL JSM-6700F | 1 |
| SEM imaging of CuAT FET film | 1 |
| SEM imaging of FET active layer | 1 |
| SEM-EDS elemental mapping/spectra | 1 |
| SEM, EDX, XRD; FT-IR in Fig. S32 | 1 |
| SEM and XRD; FT-IR in Fig. S38 | 1 |
| SEM and XRD; FT-IR in Fig. S35 | 1 |
| SEM, EDX, XRD; FT-IR in Fig. S29 | 1 |
| Ag electroplating test, SEM/EDX/XRD | 1 |
| SEM before/after electrochemical coating | 1 |
| Optical photograph and SEM | 1 |
| SEM, AFM and XRD over deposition time | 1 |
| SEM and XRD of PCTE-template nanorods | 1 |
| Photograph and SEM of selectively deposited patterned films | 1 |
| SEM after potentiostatic deposition at varied potentials | 1 |
| Ex situ XRD and SEM before/after charging and after cycling | 1 |
| SEM (SU8010) | 1 |
| SEM, TEM, HRTEM, HAADF-TEM-EDS | 1 |
| SEM, TEM, HRTEM, HAADF-STEM and elemental mapping | 1 |
| FESEM/EDX morphology and mapping | 1 |
| SEM-EDS | 1 |
| synchrotron PXRD/Rietveld plus SEM/HRTEM after cycling | 1 |
| SEM, AFM and surface profilometry | 1 |
| Field-emission SEM with EDX elemental mapping | 1 |
| cross-sectional SEM | 1 |
| SEM, TEM, HRTEM, SAED and STEM-EDS | 1 |
| optical imaging and FESEM of solution reaction controls | 1 |
| SEM after repeated Li plating/stripping | 1 |
| SEM, Hitachi S-4800 field emission instrument | 1 |
| SEM and cross-sectional SEM after Li deposition | 1 |
| Optical microscopy, SEM, TEM, HRTEM and AFM | 1 |
| FESEM with EDS mapping | 1 |
| FE-SEM with TEM inset for M-H10 | 1 |
| SEM, TEM and elemental mapping after chronoamperometry | 1 |
| SEM cross-section/top-down imaging and grazing-incidence PXRD | 1 |
| SEM after OER stability test | 1 |
| SEM and photographic morphology comparison | 1 |
| SEM/FE-SEM | 1 |
| SEM (Zeiss Sigma-500) and TEM (Talos F200S G2) | 1 |
| Top-view and cross-sectional SEM | 1 |
| FE-SEM, TEM, HAADF-STEM, SAED and EDS mapping | 1 |
| SEM, TEM, HRTEM, STEM-EDS | 1 |
| FESEM with EDS elemental mapping | 1 |
| SEM, EDS line scan/mapping and TEM | 1 |
| SEM/TEM nanorod sizing | 1 |
| FESEM/TEM morphology comparison for benzoic-acid-linked series | 1 |
| FESEM/TEM morphology comparison for H2BDC-linked series | 1 |
| FESEM/TEM morphology comparison for H3BTC-linked series | 1 |
| SEM, TEM and TEM-EDX | 1 |
| Post-water-splitting SEM/XPS/XRD | 1 |
| HRTEM, SEM and EDS mapping | 1 |
| SEM, TEM, HRTEM, SAED and elemental mapping | 1 |
| SEM cross-section/top-view, TEM and AFM tapping mode | 1 |
| SEM top-view/cross-section and AFM tapping mode | 1 |
| SEM cross-section/top-view and AFM tapping mode | 1 |
| Photocatalytic cycling stability with post-cycle XRD/FESEM/XPS | 1 |
| FE-SEM (Hitachi SU8220) and Image-Pro-Plus 6 | 1 |
| post-electrolysis XRD/SEM/HRTEM | 1 |
| XRD and SEM comparison of Co-HITP films in DMF and aqueous solvent | 1 |
| AFM, optical microscopy and SEM of interdigital electrode substrate | 1 |
| FESEM, TEM, HRTEM and AFM | 1 |
| scanning electron microscopy, Toshiba SU8000-SEM | 1 |
| SEM, TEM, HR-TEM, STEM, TEM-EDS | 1 |
| SEM, optical images, and HRTEM/SAED | 1 |
| Cross-sectional SEM thickness measurement | 1 |
| FESEM with energy-dispersive X-ray chemical mapping | 1 |
| Scanning electron microscopy (SEM), including cross-section | 1 |
| AFM, SEM, FT-IR, XPS, HR-TEM, SAED after dry grinding | 1 |
| SEM-EDS elemental mapping | 1 |
| post-test XRD and SEM on comparator electrodes | 1 |
| PXRD and SEM of comparator frameworks | 1 |
| post-test XRD/Raman/SEM/XPS | 1 |
| SEM/TEM/STEM-EDS | 1 |
| Cross-sectional FESEM | 1 |
| Optical/SEM morphology image in nanoprocessing series | 1 |
| SEM particle sizing and DLS | 1 |
| SEM and HR-STEM | 1 |
| SEM, HR-TEM, SAED, HAADF-STEM elemental mapping | 1 |
| TEM, HRTEM, SEM, contact-angle imaging | 1 |
| pXRD and SEM side-view imaging | 1 |
| Scanning electron microscopy of fabricated device; FEI Nova Nanolab 600 | 1 |
| Control-atmosphere SEM and PXRD | 1 |
| SEM, TEM, STEM-EDX | 1 |
| Post-cycling SEM/TEM/SAED | 1 |
| SEM after cycling | 1 |
| FE-SEM, JSM-7500F | 1 |
| Cross-sectional and top-view SEM | 1 |
| SEM and XRD of processed electrodes | 1 |
| SEM, TEM, HRTEM, HAADF-STEM/EDX | 1 |
| HIM/SEM-like morphology imaging | 1 |
| HIM/SEM cross-section and surface morphology | 1 |
| SEM, EDX mapping, HRTEM, SAED and FFT | 1 |
| SEM and EDS after discharge | 1 |
| SEM, cross-section SEM, EDS, and GPE visual inspection after discharge | 1 |
| SEM cross-section/top-view and AFM | 1 |
| SEM, TEM, HRTEM, STEM, and EDS elemental mapping | 1 |
| SEM elemental mapping, EDS, and XPS | 1 |
| SEM and XRD after electrochemical cycling/soaking | 1 |
| SEM, TEM and EDX elemental mapping | 1 |
| Field-emission SEM elemental mapping. | 1 |
| TEM, SEM and HRTEM | 1 |
| electrode thickness, electrolyte solubility, PXRD chemical stability, post-cycling EIS/SEM | 1 |
| HRTEM, SEM, TEM, elemental mapping | 1 |
| SEM and EDS, SU5000 | 1 |
| Scanning electron microscopy (SEM; Hitachi SU5000) | 1 |
| Ex situ synchrotron PXRD, ATR FT-IR, XAFS, XPS, and SEM at charged/discharged states | 1 |
| SEM with EDX mapping and quantitative composition | 1 |
| SEM, TEM, AC-HRTEM, HAADF-STEM, EDX mapping | 1 |
| SEM, TEM, HRTEM, EELS of discharged cathode | 1 |
| SEM-EDX and XPS of Li anode after cycling | 1 |
| FE-SEM, EDS mapping and HRTEM | 1 |
| SEM, XRD and FT-IR after air exposure | 1 |
| Field-emission scanning electron microscopy (FESEM, FEI S-3 QUANTA250FEG) | 1 |
| SEM surface and cross-section | 1 |
| SEM, TEM, STEM-EDX element mapping and SAED | 1 |
| SEM of PTFE-containing GDE | 1 |
| field emission scanning electron microscopy (FE-SEM) | 1 |
| SEM/AFM/XRD/XPS/contact angle/electronic conductivity tests | 1 |
| Cross-sectional SEM and galvanostatic symmetric-cell cycling of film-thickness variants | 1 |
| 3D SLCM, cross-sectional SEM, EDS mapping and XRD after cycling | 1 |
| TEM/FFT and SEM | 1 |
| Cross-section SEM thickness measurement | 1 |
| FESEM/TEM/EDS mapping | 1 |
| FESEM, TEM, HRTEM, dark-field TEM elemental mapping, EDS | 1 |
| SEM, HRTEM, EDX line scan and elemental mapping | 1 |
| SEM, TEM, HRTEM, SAED, EDS elemental mapping | 1 |
| SEM morphology comparison of synthesis stages | 1 |
| SEM, upper surface and cross-section | 1 |
| SEM, cross-section SEM, TEM, elemental mapping and HR-TEM | 1 |
| SEM and EDS cross-sectional mapping | 1 |
| SEM, TEM, TEM-EDS mapping | 1 |
| ex situ XPS, Ni L2,3-edge NEXAFS, in situ FT-IR/PXRD, ex situ SEM | 1 |
| post-photocatalysis N2 adsorption, PXRD, SEM/TEM-EDS | 1 |
| SEM and FESEM of CTAB-modified crystals | 1 |
| SEM morphology screen | 1 |
| SEM and high-resolution SEM | 1 |
| SEM, TEM and EDS elemental mapping | 1 |
| SEM, TEM, EDS mapping, and XRD | 1 |
| EDX elemental mapping / SEM-EDS | 1 |
| field-emission SEM | 1 |
| SEM, TEM, HRTEM, SAED | 1 |
| MEMS Au interdigitated electrode fabrication and SEM geometry inspection | 1 |
| Cross-sectional SEM and AFM | 1 |
| SEM and P-XRD after cycling | 1 |
| SEM with elemental mapping and EDS | 1 |
| SEM cross-section, EDS mapping and surface EDS spectrum for 10CAT-1 Film | 1 |
| Cyclic voltammetric stability scan plus SEM/XRD checks | 1 |
| SEM/TEM/HAADF-STEM/EDS | 1 |
| SEM and out-of-plane XRD | 1 |
| SEM surface and cross-section imaging | 1 |
| Field-emission scanning electron microscopy (SEM; Zeiss Sigma 300) | 1 |
| SEM using Phenom XL G2 Desktop SEM; EDX available on same instrument | 1 |
| EDX coupled to SEM | 1 |
| CV cycling durability and post-test SEM/XRD | 1 |
| SEM, AFM, and TEM morphology characterisation | 1 |