Harmonised techniqueNon-exclusive mapping

Raman spectroscopy

Conventional, resonance, variable-temperature and in-situ Raman methods.

167primary papers
233mapped measurements
784linked results
111raw method labels
The harmonised label does not replace the method

Every source method stays verbatim. Subtypes retain distinctions such as ATR versus transmission IR, powder versus single-crystal diffraction, and two- versus four-contact transport.

Measurement-family coverage

The same technique may serve transport, electrochemistry, sensing or another scientific purpose.

Mapped measurements

Filter source method wording, sample context and scientific purpose.

233 measurements

SpectroscopyUnspecified subtype

Raman spectroscopy and FTIR

2026 · 1D Conductive Metal-Organic Framework-Enabled Dual-Parameter MEMS Gas Sensor for Thermal Runaway Monitoring

CuBTA powder · Powder · Raman with 532 nm excitation; FTIR spectra used for C=N, C-N, M-N and N-H bands; MBTA family values reported

SpectroscopyUnspecified subtype

N K-edge XANES, XPS, FT-IR and Raman spectroscopy

2026 · Activating a Metallization Switch for Record Hydrogen Evolution in Single-Atom Modified Polar MOF Piezocatalysts

Ni SAs@UiO-66-NH2(Hf) powder · Powder · Coordination and functional-group analysis across UiO-66, UiO-66-NH2 and Ni SAs@UiO-66-NH2.

SpectroscopyUnspecified subtype

Raman spectroscopy and FT-IR spectroscopy

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 · Confocal Raman spectroscopy with 532 nm excitation and 720 nm spot size; FT-IR comparison against HITP linker.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · 514 nm excitation laser

SpectroscopyUnspecified subtype

XRD, Raman and FTIR

2026 · Nanostructured zinc-doped nickel/iron metal–organic framework electrode material for an efficient energy storage

Activated carbon negative electrode · Electrode · Supplementary activated-carbon structural characterisation

SpectroscopyUnspecified subtype

SERS Raman, XPS, EPR and Cu K-edge XAS

2025 · A Low-Symmetry Copper Benzenehexathiol Coordination Polymer with In-Plane Electrical Anisotropy

Cu5BHT crystal domains · Single Crystal · Raman within crystal domains; XPS calibrated to graphitic C1s at 284.6 eV; EPR at 3.4 K; XANES/EXAFS compared with Cu foil, CuO, Cu2O, CuS and Cu2S references.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2025 · A novel 2D conductive MOF nanobelts for highly efficient electrosynthesis of hydrogen peroxide

Ni-PTC-60 · Powder · FT-IR 400-4000 cm-1 on KBr pressed sheet; Raman with 532 nm diode laser.

Diffraction StructureUnspecified subtype

SEM/EDX, Raman and PXRD

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.

Diffraction StructureUnspecified subtype

SEM/EDX, Raman and PXRD

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.

SpectroscopyUnspecified subtype

In situ Raman spectroscopy

2025 · Catalytic Metal-Organic Framework-Functionalized Inverse-Opal Architectured Polymeric Separator for High-Performance Li-S Batteries

Li-S coin cell with ZIF-PIO separator · Electrode · Raman spectra recorded at 2.4, 2.1, 1.7, 2.4 and 2.6 V during LiSB discharge/charge.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

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 · Vibrational spectra used to identify Ag-O bonds in AgMOF and Ag-N/N-Ag-N features after ligand exchange.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Conductive metal-organic framework synthesis from metal nanoparticle precursors

Cu3(HITP)2 on Pt/glass interdigitated electrodes · Electrode · 500-2500 cm-1 scan range, 40 s acquisition; Cu and Ni MOFs on glass IDEs compared with HATP ligand.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Conductive Metal–Organic Frameworks Anchoring on V3O7·H2O Nanobelts Toward High-Capacity and Long-Life Zinc-Ion Batteries

VO@Cu-HHTP-2 · Nanosheet · Raman spectra measured over 100-1750 cm-1.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman D and G bands used to infer graphene-like conductive structure.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Construction of nanozyme based with mixed valence manganese oxide loaded on defective metal-organic frameworks for sensitive detection of biomarker procalcitonin

MdP nanoparticles · Powder · Raman spectra of dPCN-224 and MdP, including Mn-O band and D/G carbon bands.

Diffraction StructureUnspecified subtype

XRD and Raman spectroscopy

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 · Layered conductive MOF structure assessed by XRD peaks and Raman D/G bands.

SpectroscopyUnspecified subtype

In situ Raman spectroscopy during PI activation

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 · Raman spectra of PI, Fe2Ni1-NC-900 and Fe2Ni1-NC-900 + PI water suspensions.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · LabRAM HR Evolution confocal Raman, 532 nm laser; D and G bands analysed for NC-900, Ni-NC-900, Fe-NC-900 and Fe2Ni1-NC-900.

Diffraction StructureUnspecified subtype

PXRD and Raman spectroscopy

2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework

10CAT-1 Film · Electrode · Out-of-plane PXRD compared with paper filter and simulated Cu-HHTP; Raman excited at 785 nm.

Diffraction StructureUnspecified subtype

PXRD and Raman spectroscopy

2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework

CAT-1 Film · Electrode · Out-of-plane PXRD compared with paper filter and simulated Cu-HHTP; Raman excited at 785 nm.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Renishaw System 1000, 500-3000 cm-1, MOF in situ on glass IDE; compared with HHTP ligand and solution-synthesised drop-cast MOF

SpectroscopyUnspecified subtype

Confocal Raman spectroscopy (WITec alpha-300 RAS+)

2025 · Engineering the structures of ZnCo-MOFs via a ligand effect for enhanced supercapacitor performance

as-synthesised ZnCo-MOF-HMIM powder · Powder · Raman spectra compared across ZnCo-MOF-HMIM, ZnCo-MOF-BDC and ZnCo-MOF-ABDC.

SpectroscopyUnspecified subtype

FTIR, Raman, XPS, EPR spectroscopy

2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks

Cu-S-HHS solvothermal powder · Powder · KBr FTIR; SERS with silver nanoparticles/APTS glass; XPS Al Kalpha; EPR X-band at 120 K.

SpectroscopyUnspecified subtype

FTIR, Raman, XPS, EPR spectroscopy

2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks

Cu-Se-HHS solvothermal powder · Powder · KBr FTIR; SERS with silver nanoparticles/APTS glass; XPS Al Kalpha; EPR X-band at 120 K.

SpectroscopyUnspecified subtype

FTIR, Raman, XPS, EPR spectroscopy

2025 · Enhanced Electrical Conductivity by the Heavy Chalcogen Effect in Metal-Organic Frameworks

Cu-Te-HHS solvothermal powder · Powder · KBr FTIR; SERS with silver nanoparticles/APTS glass; XPS Al Kalpha; EPR X-band at 120 K.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2025 · Flexible 8 V planar supercapacitors: Unleashing ionic liquid transport via Co/Ni/Mn-MOFs nanorod pore-channel modulation

Co-MOF powder · Powder · Bonding and functional groups of c-MOF powders.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2025 · Flexible 8 V planar supercapacitors: Unleashing ionic liquid transport via Co/Ni/Mn-MOFs nanorod pore-channel modulation

Mn-MOF powder · Powder · Bonding and functional groups of c-MOF powders.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2025 · Flexible 8 V planar supercapacitors: Unleashing ionic liquid transport via Co/Ni/Mn-MOFs nanorod pore-channel modulation

Ni-MOF powder · Powder · Bonding and functional groups of c-MOF powders.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Bruker RFS 27 Raman spectrophotometer with 532 nm Nd:YAG laser; compared pure graphite and MOF-deposited graphite rods.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Interconnected Lamellar 3D Semiconductive PCP for Rechargeable Aqueous Zinc Battery Cathodes

As-prepared VO-HHTP black powder · Powder · 488 nm laser; peak assignment of V=O, V-O, V-O-V, G and D bands.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

2025 · Ligand engineering of Co-MOF-74 with hexaaminotriphenylene for enhanced oxygen reduction reaction in zinc-air batteries

Co-MOF-74-HATP powder · Powder · FTIR in Fig. 1(g) and Raman in Fig. S7 compare Co-MOF-74, Co-MOF-74-HATP and HATP; SI lists Nicolet IS50 FTIR and HORIBA Raman.

Electrical TransportUnspecified subtype

inferred conductivity evidence from Raman, XPS/XAS and EIS

2025 · Ligand engineering of Co-MOF-74 with hexaaminotriphenylene for enhanced oxygen reduction reaction in zinc-air batteries

Co-MOF-74-HATP powder · Powder · No standalone conductivity measurement geometry or numeric conductivity is reported; authors infer improved conductivity from HATP electronic effects, graphitisation and lower electrochemical charge resistance.

SpectroscopyUnspecified subtype

Raman spectroscopy, 1064 nm

2025 · Mixed Ionic and Electronic Conductivity in a Tetrathiafulvalene-Phosphonate Metal-Organic Framework

TTFTP-La MOF bulk dark crystals · Powder · Room-temperature Raman spectrum of TTFTP-La MOF.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Modulating the redox states in a 3D conductive MOF for sweat ascorbic acid monitoring

I2@FeTHQ, 20 C 6 h · Powder · 633 nm Raman, FeTHQ vs I2@FeTHQ

SpectroscopyUnspecified subtype

Ex situ Raman spectroscopy of fresh and fully activated electrodes

2025 · Operando Raman and ex situ characterization of an iron-based conductive MOF as a negative electrode in Li-ion batteries

Fresh and cycled Fe-HHTP composite electrodes stopped at 0.1 V or 3 V · Electrode · Fresh non-cycled electrode and fully activated electrodes stopped at 0.1 V and 3 V; Renishaw inVia, 532 nm, 10% power, 60 s for cycled electrodes.

SpectroscopyUnspecified subtype

Operando Raman spectroscopy during first galvanostatic lithiation

2025 · Operando Raman and ex situ characterization of an iron-based conductive MOF as a negative electrode in Li-ion batteries

Rectangular Fe-HHTP composite electrode in adapted operando Raman cell · Electrode · Renishaw inVia, 50x objective, 532 nm, 1% power, two accumulations, 90 s acquisition; Bio-Logic SP-150 applied galvanostatic current; CaF2 window.

SpectroscopyUnspecified subtype

Ex situ Raman spectroscopy

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 · Dried powder in airtight Raman cell with borosilicate window; Renishaw inVia, 50x objective, 532 nm, 10% power, 1 accumulation, 20 s acquisition.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Photoactivated conductive MOF thin film arrays on micro-LEDs for chemiresistive gas sensing

CuHHTP-5C · Thin Film · CuHHTP-xC films compared with crystalline Cu3HHTP2 powders; SI reports Renishaw Raman microscope, 532 nm laser, 1 mW beam for material characterisation.

SpectroscopyUnspecified subtype

FT-IR and Raman

2025 · Radiation-Induced in Situ Construction of 2D Conductive Defect-Rich Metal-Organic Frameworks for High-Performance Supercapacitor

Cu-CAT-Rad · Powder · 400-4000 cm-1 FT-IR; Raman comparison

SpectroscopyUnspecified subtype

FT-IR and Raman

2025 · Radiation-Induced in Situ Construction of 2D Conductive Defect-Rich Metal-Organic Frameworks for High-Performance Supercapacitor

Cu-CAT-Sol · Powder · 400-4000 cm-1 FT-IR; Raman comparison

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Solvent-Directed Assembly of π-Stacked 3D Metal-Organic Frameworks with Tunable Conductivity Enhanced by C60 Encapsulation

NU-4003-C60 · Single Crystal · 785 nm excitation; comparison of C60, NU-4003, and NU-4003-C60

SpectroscopyUnspecified subtype

Raman, FTIR and XPS

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 · Vibrational and surface chemical-state characterisation of Zn-HHTP and Zn-TCPP.

SpectroscopyUnspecified subtype

Post-OER SEM, XPS, and Raman

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.

SpectroscopyUnspecified subtype

Raman and FT-IR spectroscopy

2025 · Two-dimensional conductive metal-organic framework with 2,3,6,7,14,15-triptycenehexathiol (TCHT) ligand: synthesis, structure, electrical conductivity and CO2RR activity

Cu-TCHT black powder · Powder · Raman on Horiba LabRAM HR Evolution; IR on JASCO FT/IR-4200 at room temperature.

SpectroscopyUnspecified subtype

FT-IR, Raman and XRD

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 · Powder characterisation of 1D Cu-TABQ for comparison with 2D Cu-TABQ.

SpectroscopyUnspecified subtype

FT-IR, Raman, XPS, EPR and TEM-EDS mapping

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 · Powder characterisation of 2D Cu-TABQ; instruments include Raman Bruker Senterra, FTIR Bruker Vertex 70 V, XPS Thermo ESCALAB 250Xi and EPR Bruker EMXplus-6/1.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy.

2025 · Uninterrupted π-d Conjugated Three-Dimensional Conductive Metal-Organic Framework

As-synthesised Ni3HBC greenish-black nanocrystalline powder · Powder · FT-IR in Ar glovebox on ATR pellet, 400-4000 cm-1, 2 cm-1 resolution; Raman compared Ni acetate, HBC and Ni3HBC.

SpectroscopyUnspecified subtype

Raman spectroscopy

2025 · Unveiling high-mobility hot carriers in a two-dimensional conjugated coordination polymer

large-area Cu3BHT film on fused silica · Thin Film · WITec alpha300R Raman microscope under 532 nm laser excitation; Cu3BHT film transferred onto fused silica substrate.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · Aliovalent Substitution Tunes Physical Properties in a Conductive Bis(dithiolene) Two-Dimensional Metal-Organic Framework

Ni3(THT)2 black powder · Powder · powder pellets sealed between glass slides in glovebox; 473 nm excitation, 2-10% maximum power, 100x long path objective, 600 mm^-1 grating

SpectroscopyUnspecified subtype

In situ Raman spectroscopy

2024 · Carbon quantum dot-mediated binary metal-organic framework nanosheets for efficient oxygen evolution at ampere-level current densities in proton exchange membrane electrolyzers

NiFe-MOF-CQD on glassy carbon electrode · Electrode · In situ Raman in flow cell with 1.0 M KOH; GDL working electrode, Ag/AgCl reference, Pt wire counter; 532 nm laser, 50x objective; measured at 1.5 V vs RHE.

SpectroscopyUnspecified subtype

Raman, FT-IR and XPS spectroscopy

2024 · Carbon quantum dot-mediated binary metal-organic framework nanosheets for efficient oxygen evolution at ampere-level current densities in proton exchange membrane electrolyzers

NiFe-MOF-CQD · Nanosheet · Spectroscopic confirmation of NiFe-MOF-CQD composition, bonding and electronic-state shifts.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman D/G ratio comparison of US-Ni-HITP and DS-Ni-HITP films.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy compared with Ag4TTBQ and H6TTHQ

2024 · Control of the Hydroquinone/Benzoquinone Redox State in High-Mobility Semiconducting Conjugated Coordination Polymers

as-synthesised Ag4TTHQ dark red/dark brown powder · Powder · IR and Raman spectra used to assign thiol deprotonation, hydroxyl retention and carbonyl formation.

SpectroscopyUnspecified subtype

EDX, FTIR, and Raman spectroscopy

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 · Composition and bonding characterisation of synthesised Ni-HAB film.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · Copper-doped strontium metal-organic framework: Dual-function active material for supercapacitor and oxygen evolution reaction

Cu-doped Sr MOF powder · Powder · Renishaw inVia confocal Raman microscope with 532 nm laser; undoped and Cu-doped Sr MOF compared.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · Electrochemical Capacitance Traces with Interlayer Spacing in Two-dimensional Conductive Metal–Organic Frameworks

exfoliated Bu-MOF ethanol colloid · Nanosheet · Bulk Bu-MOF powder compared with drop-cast exfoliated Bu-MOF on silicon substrate; 532 nm excitation.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

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 · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

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 · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

2024 · Electrodeposition of Ni/Cu Bimetallic Conductive Metal–Organic Frameworks Electrocatalysts with Boosted Oxygen Reduction Activity for Zinc–Air Batteries

Ni1.6Cu1.4(HITP)2 film on carbon cloth · Electrode · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

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 · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

2024 · Electrodeposition of Ni/Cu Bimetallic Conductive Metal–Organic Frameworks Electrocatalysts with Boosted Oxygen Reduction Activity for Zinc–Air Batteries

Ni2.3Cu0.7(HITP)2 film on carbon cloth · Electrode · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

Raman spectroscopy (532 nm Ar ion laser)

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 · Raman spectra of M3(HITP)2 samples; D/G bands and ID/IG ratios.

SpectroscopyUnspecified subtype

XRD, Raman spectroscopy, and XPS

2024 · Enhancement of the performance of Ge–air batteries under high temperatures using conductive MOF-modified Ge anodes

Ge@Ni3(HITP)2 anode · Electrode · Composite-anode phase, 2D conjugated structure, elemental survey, and high-resolution Ni 2p/N 1s spectra.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks

H4TCNQ@Cu-MOF-74 pellet · Pellet · Raman spectra of Cu/Mn-MOF-74, H4TCNQ, and H4TCNQ@Cu/Mn-MOF-74.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks

TCNQ@Mg-MOF-74 pellet · Pellet · Raman spectra of Mg-MOF-74, Zn-MOF-74, TCNQ, and TCNQ@Mg/Zn-MOF-74.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Renishaw inVia Raman microscope; spectra between 1100-2400 cm-1, 10 accumulations, 532 nm laser excitation, about 50 microW at sample.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · From insulator to semiconductor: effect of host-guest interactions on charge transport in M-MOF-74 metal-organic frameworks

TCNQ@Mn-MOF-74 pellet · Pellet · Same Raman method; Mn-MOF-74 before and after TCNQ infiltration.

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · High-Performance H2S Sensors to Detect SF6 Leakage

Co1.8Ni1.2(HITP)2 powder · Powder · Raman spectra for Co3(HITP)2, Ni3(HITP)2 and CoxNi3-x(HITP)2.

SpectroscopyUnspecified subtype

in-situ Raman spectroscopy and optical microscopy

2024 · Layered coordination polymer with two-dimensional covalent bismuth-organic networks: Semiconductor and lithium ion storage

Bi-DSBDC-DMA composite electrode · Electrode · Renishaw inVia Raman microscope, 532 nm laser; in-situ cell with transparent mica window; particles loaded on copper sieve.

SpectroscopyUnspecified subtype

Raman spectroscopy

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

Cu-GDY (CG) · Powder · Raman bands for CG

SpectroscopyUnspecified subtype

Raman spectroscopy of discharged electrode

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-140 C air cathode · Electrode · 140 C Mn-MOF air cathode after different charge-discharge cycles

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Horiba Labram, room-temperature wavenumber range 50-3500 cm-1

SpectroscopyUnspecified subtype

Raman spectroscopy

2024 · Rational design of sulfur vacancy-rich NiCo2S4/C nanostructure for high-performance hybrid supercapacitors

NCSC · Powder · Raman spectra of NCSC and NCS.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

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 · FT-IR and Raman confirmation of metal-ligand coordination in NixFe1-x-THQ.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

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 · FTIR 400-2000 cm^-1; Raman used to confirm phosphate vibrations and BTC replacement

SpectroscopyUnspecified subtype

ATR-FTIR and Raman spectroscopy

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 · ATR-FTIR on JASCO FT/IR-6800; Raman with 532 nm Renishaw inVia confocal microscope

SpectroscopyUnspecified subtype

Raman spectroscopy and infrared comparison

2024 · Synthesis and structure of a non-van-der-Waals two-dimensional coordination polymer with superconductivity

Cu3BHT micro-crystal array / multicrystalline film · Thin Film · Raman collected with a Horiba spectrometer using 532 nm laser excitation; SI compares microcrystal and previously reported film spectra.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · WiTec Alpha 600, 532 nm laser source, spectral range 1000-3500 cm^-1.

SpectroscopyUnspecified subtype

TEM, elemental mapping, GIXRD, FTIR and Raman

2023 · Ag Nanoparticles-Induced Metallic Conductivity in Thin Films of 2D Metal-Organic Framework Cu3(HHTP)2

AgNPs@Cu-TCPP thin film · Thin Film · AgNPs@Cu-TCPP structural and spectroscopic characterisation

SpectroscopyUnspecified subtype

In situ Raman spectroscopy

2023 · CO2-Sensitive Porous Magnet: Antiferromagnet Creation from a Paramagnetic Charge-Transfer Layered Metal-Organic Framework

Activated crystals of compound 1 · Single Crystal · Raman spectra measured for 1 under air at STP and for 1-CO2 under 100 kPa CO2 at 240 K.

SpectroscopyUnspecified subtype

post-CV XPS, CV and in situ Raman during charge-discharge

2023 · Conductive metal-organic frameworks with wheel-shaped metallomacrocycle subunits as high-performance supercapacitor electrodes

MWM-1 (Co/2Ni) composite working electrode · Electrode · XPS before/after 100 cycles of cyclic voltammetry; in situ Raman during charge/discharge

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectrum used to assign metal-ion and benzene-ring vibrational regions

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

2023 · Exceptionally high charge mobility in phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type two-dimensional conjugated polymers

2DCP-CuPc powder · Powder · Spectroscopic verification of imidazole ring formation and conjugation; 2DCP-MPc powder samples.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2023 · Near IR Bandgap Semiconducting 2D Conjugated Metal-Organic Framework with Rhombic Lattice and High Mobility

Cu2(OHPTP) bulk powder · Powder · FT-IR ATR; Raman with Nd-YAG 1064 nm, 400 mW, 400-4000 cm-1 range.

SpectroscopyUnspecified subtype

XPS, EPR, Raman and FTIR

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 · Chemical structure and electronic state comparison of Cu-BTA-H/L and Ni-BTA-H; XPS used Escalab 250Xi, Raman excitation 632 nm, FTIR Ruili WQF-510, EPR Bruker EMS nano at room temperature.

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

2023 · Redox-Active Mixed-Linker Metal–Organic Frameworks with Switchable Semiconductive Characteristics for Tailorable Chemiresistive Sensing

Mn2[TTF]x[NiS4]1-x powder series · Powder · FT-IR through KBr pellets (4000-400 cm-1); Raman spectra of the series and linkers.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectrum of p-a-Cu-HHTP film.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Carbon D and G bands of CoP/CoF and Co/CoP/NC/CoF phosphated at 350, 450, 550, 650 C.

SpectroscopyUnspecified subtype

Raman spectroscopy, FT-IR, XPS and elemental analysis

2023 · Semiconducting Conjugated Coordination Polymer with High Charge Mobility Enabled by “4 + 2” Phenyl Ligands

as-synthesised Cu4DHTTB crystals/powder · Powder · Raman 120-4000 cm-1 at 298 K with 4 cm-1 resolution and 256 scans; XPS with Al K alpha source; CHN plus ICP-OES for composition.

SpectroscopyUnspecified subtype

Raman spectroscopy

2023 · Sensing interface based on electrodeposited Cu-BTC microporous film for electrochemical detection of the painkiller paracetamol

Cu-BTC/GCE, optimised 5 min film · Electrode · Raman spectrum of Cu-BTC grown on GCE, recorded on Labram Horiba spectrometer.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectrum used to identify G band from sp2 hybridised carbon in triphenylene units.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectrum used to identify G band from sp2 hybridised carbon in triphenylene units.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Room-temperature Raman, excitation 488 nm; MC/MSC and temperature optimisation samples.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectrum used to confirm expected Cu3(HHTP)2 sample and sp2-hybridised carbon.

Electrochemistry ApplicationUnspecified subtype

XRD, Raman and Li 1s XPS after discharge/charge

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/charged cathode product identification

SpectroscopyUnspecified subtype

In situ Raman spectroscopy during NO3RR

2022 · Atomically Precise Integration of Multiple Functional Motifs in Catalytic Metal-Organic Frameworks for Highly Efficient Nitrate Electroreduction

In8 catalyst ink on carbon paper electrode · Electrode · In8 in pH 1-5 H2SO4/KNO3 electrolytes at selected potentials; 532 nm laser.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Bromine Vapor Induced Continuous p- to n-Type Conversion of a Semiconductive Metal-Organic Framework Cu[Cu(pdt)2]

Brx@Cu[Cu(pdt)2] bromine-doped series · Powder · HORIBA XploRA plus Raman microscope, room temperature, 785 nm infrared laser.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Charge-transfer interface of insulating metal-organic frameworks with metallic conduction

Cu-TCNQ/Cu-BPyDC heterostructured thin film · Thin Film · Raman spectra compared for pristine Cu-TCNQ, pristine Cu-BPyDC, heterostructure, growth cycles and TCNQ@Cu-BPyDC; excitation 632.8 nm in Methods.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films

Random polycrystalline TCNQ-loaded HKUST-1 SURMOF film on borosilicate glass, ca. 130 nm · Thin Film · Raman spectra before and after TCNQ loading, with drop-cast TCNQ reference on gold.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Room temperature; LabRAM HR Evolution; 532 nm excitation; powder mixed with spectrum-pure KBr and compressed into a flake.

SpectroscopyUnspecified subtype

ex situ XPS, FTIR, and Raman during potassiation/depotassiation

2022 · Conductive Co-based metal organic framework nanostructures for excellent potassium- and lithium-ion storage: kinetics and mechanism studies

Co-CAT MOF PIB anode electrode · Electrode · Fresh, potassiated, and depotassiated Co-CAT MOF electrodes analysed to infer redox sites and reversibility.

SpectroscopyUnspecified subtype

Confocal Raman spectroscopy and 2D Raman mapping

2022 · Conductive Hybrid Cu-HHTP-TCNQ Metal–Organic Frameworks for Chemiresistive Sensing

Cu-HHTP-TCNQ thin-film reaction-time series · Thin Film · Ambient Raman, 488 nm excitation, 0.3 mW, 100x objective; maps 15 um x 15 um at 3 pixels/um and 1.6 s integration.

SpectroscopyUnspecified subtype

Raman spectroscopy and ATR-IR spectroscopy

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 · Raman spectra for BHT and Cu-BHT pH series; ATR-IR spectra for BHT and Cu-BHT.

SpectroscopyUnspecified subtype

FT-IR, Raman and UV-Vis spectroscopy

2022 · Dual nanozyme based on ultrathin 2D conductive MOF nanosheets intergraded with gold nanoparticles for electrochemical biosensing of H2O2 in cancer cells

Au-NPs/Cu-HHTP-NSs · Nanosheet · Spectroscopic confirmation of Cu-O coordination and Au-NP surface plasmon response.

SpectroscopyUnspecified subtype

IRRAS, Raman and XPS spectroscopy

2022 · Electrically regulating nonlinear optical limiting of metal-organic framework film

Cu-HHTP[001] film · Thin Film · IRRAS with Bruker Vertex 70 FTIR, 2 cm-1 resolution, 80 deg incidence; XPS with ESCALAB250Xi; Raman spectra in SI.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectra of NZMF and NZMF/CF; SI method gives 200-3000 cm^-1 range and 1.4 cm^-1 resolution.

SpectroscopyUnspecified subtype

Raman, UV-vis and ZFC-FC magnetic susceptibility

2022 · Host-guest molecular interaction promoted urea electrosynthesis over a precisely designed conductive metal-organic framework

Co-PMDA-2-mbIM powder · Powder · Raman lambda 532 nm; UV-vis adsorption; magnetic susceptibility under H = 500 Oe.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor

C1-ZIF-67 powder · Powder · Renishaw inVia Raman, He-Ne laser source lambda = 532 nm.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · In-Built Fabrication of MOF Assimilated Porous Hollow Carbon from Pre-Hydrolysate for Supercapacitor

C2-ZIF-67 powder · Powder · Renishaw inVia Raman, He-Ne laser source lambda = 532 nm.

SpectroscopyUnspecified subtype

FTIR, XPS and Raman before/after TEA treatment

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 · Chemical bonding comparison of precursor film and post-treated Ni3(HITP)2 film.

SpectroscopyUnspecified subtype

Raman spectroscopy (Renishaw inVia Raman)

2022 · Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms

as-formulated Cu-MOF · Powder · Raman spectrum of Cu-MOF.

SpectroscopyUnspecified subtype

Raman spectroscopy (Renishaw inVia Raman)

2022 · Metal organic frameworks (MOFs) as potential anode materials for improving power generation from algal biophotovoltaic (BPV) platforms

as-formulated Cu-Ni MOF · Powder · Raman spectrum of Cu-Ni MOF.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

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 · Functional groups and vibrational modes of NiCo-MOF samples.

SpectroscopyUnspecified subtype

Ex-situ Raman spectroscopy

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 · Horiba Labram Aramis, 532 nm laser; 633 and 532 nm spectra shown.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

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 · FTIR spectra of all six powders; Raman spectra with 532 nm laser.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Redox-Active Ni(II) Nodes Induced Electrochromism in a Two-Dimensional Conductive Metal-Organic Framework

Ni3(HITP)2 precipitate/powder · Powder · inVia Reflex laser Raman spectrometer with excitation wavelength 532 nm.

SpectroscopyUnspecified subtype

operando electrochemical resonance Raman spectroscopy

2022 · sp-Carbon Incorporated Conductive Metal-Organic Framework as Photocathode for Photoelectrochemical Hydrogen Generation

Cu3HHAE2 photocathode on Cu foam · Electrode · 0.1 M Na2SO4, 594 nm laser excitation, potential scan from 0.7 to 0.0 V vs RHE; confocal Raman microscope with Ar flow, 20x objective, about 1.5 mW laser.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Split-cell symmetric supercapacitor performance of bimetallic MOFs yolk-shell hierarchical microstructure

Ni-Zn MOF precipitate / powder · Powder · Raman spectrum of Ni-Zn MOF; SI reports XPLORA Raman spectrometer, 200-3000 cm-1, 1.4 cm-1 resolution and 2400 grooves/mm.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Synthesis of Tostadas-Shaped Metal-Organic Frameworks for Remitting Capacity Fading of Li-Ion Batteries

NHM; Tostadas-shaped Ni-HITP assembly · Powder · 473 nm Raman; 100-3000 cm-1; 2 s runs with three accumulations.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Target-triggered hybridization chain reaction for ultrasensitive dual-signal miRNA detection

Calcined N-PCD powder · Powder · Raman spectra of N-PCD graphitic/disordered carbon peaks; 532 nm excitation per SI.

SpectroscopyUnspecified subtype

Raman spectroscopy

2022 · Target-triggered hybridization chain reaction for ultrasensitive dual-signal miRNA detection

Synthesised ZIF-8 powder · Powder · Raman spectra of ZIF-8 vibration modes; 532 nm excitation per SI.

Diffraction StructureUnspecified subtype

PXRD, FT-IR, Raman, XPS and TGA characterisation

2022 · Tunable Capacitive Behavior in Metallopolymer-based Electrochromic Thin Film Supercapacitors

poly-Fe-L1 isolated metallopolymer powder · Powder · PXRD with Cu K-alpha radiation; FT-IR in KBr; Raman spectra; XPS with Al K-alpha; TGA in nitrogen at 10 degrees C/min

Diffraction StructureUnspecified subtype

PXRD, FT-IR, Raman, XPS and TGA characterisation

2022 · Tunable Capacitive Behavior in Metallopolymer-based Electrochromic Thin Film Supercapacitors

poly-Fe-L2 isolated metallopolymer powder · Powder · PXRD with Cu K-alpha radiation; FT-IR in KBr; Raman spectra; XPS with Al K-alpha; TGA in nitrogen at 10 degrees C/min

Diffraction StructureUnspecified subtype

PXRD, FT-IR, Raman, XPS and TGA characterisation

2022 · Tunable Capacitive Behavior in Metallopolymer-based Electrochromic Thin Film Supercapacitors

poly-Fe-L3 isolated metallopolymer powder · Powder · PXRD with Cu K-alpha radiation; FT-IR in KBr; Raman spectra; XPS with Al K-alpha; TGA in nitrogen at 10 degrees C/min

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

2022 · Ultra-thin Two-Dimensional Trimetallic Metal-Organic Framework for Photocatalytic Reduction of CO2

NiZrCu-BDC nanosheets · Nanosheet · series comparison of three MOFs

SpectroscopyUnspecified subtype

Post-OER microscopy/XRD/XPS/XANES and in situ Raman

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 · Characterisation after 100 h at 100 mA cm^-2; Raman from OCP to 1.5 V vs RHE.

SpectroscopyUnspecified subtype

Raman spectroscopy

2021 · Charge-Transfer-Induced Electrical Conductivity in a Tetrathiafulvalene-Based Metal-Organic Framework

(TCNE)xZn2TTFTB series, samples 1-6 · Powder · inVia Reflex Raman microscope with Leica DM2700M 50x microscope; Renishaw spectrometer; 532 nm laser; samples flame-sealed in borosilicate capillaries in glovebox.

Diffraction StructureUnspecified subtype

post-test XRD/Raman/SEM/XPS

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

Computational ModellingUnspecified subtype

simulated Raman spectrum from DFT fragment

2021 · Coordination environment dependent selectivity of single-site-Cu enriched crystalline porous catalysts in CO2 reduction to CH4

Cu-O4 active-site DFT fragment · Model · Harmonic approximation on Cu-O4 site fragment; compared with experimental Raman of fresh/tested Cu-DBC

SpectroscopyUnspecified subtype

Raman spectroscopy and Raman mapping

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 · Film spectrum compared with powder; Raman mapping at 1345 and 1566 cm-1.

SpectroscopyUnspecified subtype

Raman spectroscopy and IRRAS

2021 · Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors

BQ@Cu3(BTC)2 thin film on Cu foil · Thin Film · Raman and IRRAS spectra of pure BQ, pure Cu3(BTC)2 and BQ@Cu3(BTC)2; SI caption reports BQ C=C/C=O bands and C=O IRRAS shift.

SpectroscopyUnspecified subtype

Raman spectroscopy and IRRAS

2021 · Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors

PMDI@Cu3(BTC)2 thin film on Cu foil · Thin Film · Raman and IRRAS spectra of pure PMDI, pure Cu3(BTC)2 and PMDI@Cu3(BTC)2; SI caption reports PMDI -NH- Raman/IRRAS shifts.

SpectroscopyUnspecified subtype

Raman spectroscopy

2021 · Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors

TCNQ@Cu3(BTC)2 thin film on Cu foil · Thin Film · Renishaw inVia Raman spectroscopy, 532 nm laser, room temperature; spectra of TCNQ, Cu3(BTC)2 and TCNQ@Cu3(BTC)2.

SpectroscopyUnspecified subtype

post-OER HRTEM, Raman and XPS

2021 · Facet Engineering in Ultrathin Two-Dimensional NiFe Metal-Organic Frameworks by Coordination Modulation for Enhanced Electrocatalytic Water Oxidation

NiFe-MOF NSs catalyst ink on glassy carbon · Electrode · NiFe-MOF NSs after 12 h water oxidation at 10 mA cm^-2

SpectroscopyUnspecified subtype

Raman spectroscopy at 532 nm.

2021 · From n- To p-Type Material: Effect of Metal Ion on Charge Transport in Metal-Organic Materials

a-Pt-HITP powder · Powder · 20 scans per sample, 50x objective, 100 mW/cm2 laser power.

SpectroscopyUnspecified subtype

ATR-FTIR, Raman, XPS, SEM-EDX, XANES, EXAFS, UV-vis

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

SpectroscopyUnspecified subtype

Raman and FTIR

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 · Raman and FTIR comparison of ZIF and D-ZIF.

SpectroscopyUnspecified subtype

Raman spectroscopy

2021 · Macrocycle-Based Metal-Organic Frameworks with NO2-Driven On/Off Switch of Conductivity

MOF A-NO2 yellow NO2-loaded crystal · Single Crystal · Raman spectra of MOFs A, A-100, A-NO2, and A-100-NO2 at 298 K and 1.0 bar by Cora 5X00 Raman spectrometer.

SpectroscopyUnspecified subtype

Raman spectroscopy, NRS-5100

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 · Raman spectra of pure Si and Si@Cu3(HITP)2 composites.

SpectroscopyUnspecified subtype

Raman spectroscopy, NRS-5100

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 Cu-MOF (Cu3(HITP)2) · Powder · Raman spectrum of pure Cu3(HITP)2 in SI.

SpectroscopyUnspecified subtype

Raman spectroscopy

2021 · Sulfur vacancies enriched Nickel-Cobalt sulfides hollow spheres with high performance for All-Solid-State hybrid supercapacitor

r-NiCo2S4-6 HSs · Powder · Raman spectra of NiCo2S4-6 HSs and r-NiCo2S4-6 HSs.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · A highly oriented conductive MOF thin film-based Schottky diode for self-powered light and gas detection

Cu3(C18H6O6)2 20 nm thin film · Thin Film · Raman spectra of Cu3(C18H6O6)2 film; D- and G-band-like peaks reported in SI text.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectra of Cu3(C18H6(NH)6)2 film; D- and G-band-like peaks reported in SI text.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · A highly oriented conductive MOF thin film-based Schottky diode for self-powered light and gas detection

Ni3(C18H6(NH)6)2 20 nm thin film · Thin Film · Raman spectra of Ni3(C18H6(NH)6)2 film; D- and G-band-like peaks reported in SI text.

SpectroscopyUnspecified subtype

Raman spectroscopy, 532 nm laser

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 · As-made compound 1, NaBH4-cleaved crystals after overnight dipping, and air-reformed compound 1.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Conductive Metal-Organic Framework Thin Film Hybrids by Electropolymerization of Monosubstituted Acetylenes

1-hexyne-loaded Cu(BDC) SURMOF-2 · Thin Film · Renishaw inVia Raman microscope, 532 nm laser, 2 mW output, Olympus MPLAN 50x NA 0.75 objective; loading monitored after 10, 25, and 45 h immersion.

SpectroscopyUnspecified subtype

TOF-SIMS depth profiling and confocal Raman control

2020 · Conductive Metal-Organic Framework Thin Film Hybrids by Electropolymerization of Monosubstituted Acetylenes

Bulk-solution EP control using as-prepared SURMOF electrode · Electrode · Depth profiles and 3D renders of Cu+, Bu+, and BuN+ ions after bulk-solution EP control; confocal Raman spectra above and inside sample.

SpectroscopyUnspecified subtype

ATR-FTIR and resonance Raman spectroscopy

2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design

purified Ni-ett powder · Powder · FTIR and Raman spectra of all three purified OMCPs after purification.

ThermoelectricUnspecified subtype

Raman thermometry

2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design

annealed Ni-diett freestanding pellet · Pellet · Single laser used as heater and thermometer; representative Raman spectra at different absorbed powers for Ni-diett and calibrated temperature rise vs absorbed power for each OMCP.

SpectroscopyUnspecified subtype

FTIR and Raman spectroscopy

2020 · Electrochemical immunoassay for the carcinoembryonic antigen based on Au NPs modified zeolitic imidazolate framework and ordered mesoporous carbon

ZIF-8 powder · Powder · FTIR and Raman spectra of ZIF-8 nanoparticles in the Supporting Information.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Encapsulating metal organic framework into hollow mesoporous carbon sphere as efficient oxygen bifunctional electrocatalyst

HMCS · Powder · Raman spectrum of HMCS over 300-3500 cm^-1

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Heteroatom-doped 3D porous carbon architectures for highly stable aqueous zinc metal batteries and non-aqueous lithium metal batteries

NOCA@CF · Electrode · D and G bands of carbon-based NOCA@CF.

SpectroscopyUnspecified subtype

Raman and FT-IR spectroscopy

2020 · In Situ Growth of Lithiophilic MOF Layer Enabling Dendrite-free Lithium Deposition

Cu-MOF-30 min · Electrode · Cu-MOF-30 min before/after electrolyte immersion and before/after Li cycling.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure

Co-THBQ well-crystallised powder · Powder · 532 nm excitation, room temperature; powder mixed with KBr and compressed into a flake.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure

Fe-THBQ black powder · Powder · LabRAM HR Evolution Raman spectrometer, 532 nm excitation, room temperature; powder mixed with KBr and compressed into a flake.

SpectroscopyUnspecified subtype

Raman spectroscopy

2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure

Mn-THBQ powder · Powder · 532 nm excitation, room temperature; powder mixed with KBr and compressed into a flake.

SpectroscopyUnspecified subtype

Raman, XPS and EPR spectroscopy

2020 · Synthesis of a copper 1,3,5-triamino-2,4,6-benzenetriol metal-organic framework

Iodine-doped Cu3(TABTO)2-Ar powder · Powder · Raman on Si/SiO2 under 532 nm excitation; XPS survey/high-resolution; EPR comparison with pristine.

SpectroscopyUnspecified subtype

Raman spectroscopy and UV/vis/NIR absorption spectroscopy.

2020 · Ultrathin two-dimensional conjugated metal-organic framework single-crystalline nanosheets enabled by surfactant-assisted synthesis

HHB-Cu nanosheets · Nanosheet · Raman at ambient conditions; UV/vis on HHB-Cu NSs dispersed on a quartz substrate at room temperature.

SpectroscopyUnspecified subtype

Electrochemical in situ Raman spectroscopy

2020 · Understanding the mechanism of high capacitance in nickel hexaaminobenzene-based conductive metal-organic frameworks in aqueous electrolytes

free-standing NiHAB composite electrode · Electrode · Horiba XploRA+ confocal Raman; 532 nm laser; 10x objective; 1% filter; 250 s acquisition; open three-electrode cell; NiHAB on gold current collector working electrode, Ag/AgCl in 1 M KCl reference, activated carbon on gold counter; CV shown in 1 M NaOH.

SpectroscopyUnspecified subtype

Raman spectroscopy, WITec CRM200 with 532 nm excitation

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 · Raman spectra of Co3O4@NC/CTs, ZnCo2O4/CTs and ZnCo2O4@NC/CTs.

SpectroscopyUnspecified subtype

Raman spectroscopy

2019 · A Li+ conductive metal organic framework electrolyte boosts the high-temperature performance of dendrite-free lithium batteries

Optimised ILE@MOF ionogel, 1.5 g ILE per 1.0 g MOF · Thin Film · Raman spectra of ILE@MOF and ILE.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectra of Co3O4, CuCAT and Co3O4@CuCAT.

SpectroscopyUnspecified subtype

Raman spectroscopy

2019 · Copper-based conductive metal organic framework in-situ grown on copper foam as a bifunctional electrocatalyst

powder/delaminated Cu3HITP2 · Powder · Horiba Jobin Yvon HR Evolution; 633 nm excitation; scan range 800-2200 cm-1.

SpectroscopyUnspecified subtype

SEM and Raman after acid soaking

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.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Raman spectra of HKUST-1 ED compared with HKUST-1 HT.

SpectroscopyUnspecified subtype

Raman spectroscopy

2019 · Copper-Metal Organic Frameworks Electrodeposited on Carbon Paper as an Enhanced Cathode for the Hydrogen Evolution Reaction

HKUST-1 HT powder/crystals · Powder · Horiba HR Evolution, 633 nm laser excitation, 100-1800 cm^-1 sweep.

OtherUnspecified subtype

XRD, FTIR, SEM, TEM/EDS, TGA, ICP, XPS, Raman, BET

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.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · RENISHAW inVia, excitation wavelength 785 nm; compared with terephthalic acid.

Microscopy MorphologyUnspecified subtype

SEM, TEM, XRD, Raman spectroscopy

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

SpectroscopyUnspecified subtype

TG analysis, Raman spectroscopy, N2 BET

2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework

Fe@GC microrods · Powder · TG in air 25-800 deg C at 10 deg C min-1; Raman with 515 nm laser at 25 deg C; BET with N2

SpectroscopyUnspecified subtype

XPS, Raman spectroscopy, TEM particle-size analysis

2018 · Electrochemical properties of uniquely structured Fe2O3 and FeSe2/graphitic-carbon microrods synthesized by applying a metal-organic framework

H-FeSe2/GC microrods · Powder · Chemical state, carbon order, and FeSe2 particle size for H-FeSe2/GC and D-FeSe2/C

SpectroscopyUnspecified subtype

Raman spectroscopy

2018 · Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks

free-standing Ag-BHT film · Thin Film · Tensor 27 Raman spectrometer, 100-3000 cm-1, 298 K.

SpectroscopyUnspecified subtype

Raman spectroscopy, Photon Design RSM-310

2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework

Compound 1 Mn-MOF 5TTF crystals · Single Crystal · Excitation laser wavelength 1064 nm; Mn-MOF, TTF and compound 1 compared.

SpectroscopyUnspecified subtype

XPS and Raman spectroscopy

2018 · Nanostructured CuO/C Hollow Shell@3D Copper Dendrites as a Highly Efficient Electrocatalyst for Oxygen Evolution Reaction

HS-CuO/C NDs electrode · Electrode · Surface valence/composition and carbon bonding of HS-CuO/C NDs; Raman excitation wavelength 532 nm from SI.

SpectroscopyUnspecified subtype

pressure-dependent resonance Raman spectroscopy

2018 · Probing charge transfer characteristics in a donor-acceptor metal-organic framework by Raman spectroelectrochemistry and pressure-dependence studies

single crystal [(Zn(DMF))2(TTFTC)(DPNI)] in DAC · Single Crystal · Micro Laser Raman Spectrometer NRS-5200; He-Ne laser lambda = 632 nm; diamond anvil cell; Daphne 7474; ruby pressure calibration; room temperature.

SpectroscopyUnspecified subtype

Raman spectroscopy with DFT-assisted vibrational assignment

2018 · Probing charge transfer characteristics in a donor-acceptor metal-organic framework by Raman spectroelectrochemistry and pressure-dependence studies

bulk powder [(Zn(DMF))2(TTFTC)(DPNI)] · Powder · Solid MOF powder on silicon crystal substrate; 785 nm excitation; comparison with DPNI and H4TTFTC controls; Table S1 assignments from DFT modelling.

Electrochemistry ApplicationUnspecified subtype

in situ solid-state Raman spectroelectrochemistry

2018 · Probing charge transfer characteristics in a donor-acceptor metal-organic framework by Raman spectroelectrochemistry and pressure-dependence studies

[(Zn(DMF))2(TTFTC)(DPNI)] powder on DS-150 screen-printed electrode · Electrode · DS-150 screen-printed electrode; 0.2 M LiClO4/ethylene glycol; 785 nm laser; 150-2000 cm^-1; 120 s exposure; 5% laser power; potentials increased in small increments.

SpectroscopyUnspecified subtype

steady-state resonance Raman spectroscopy

2018 · Probing charge transfer characteristics in a donor-acceptor metal-organic framework by Raman spectroelectrochemistry and pressure-dependence studies

bulk powder [(Zn(DMF))2(TTFTC)(DPNI)] · Powder · Spectra obtained under 406 nm and 1064 nm excitation; 406 nm with Isoplane SCT320/Pylon CCD/krypton ion laser; 1064 nm with WP1064 Raman spectrometer.

SpectroscopyUnspecified subtype

Raman spectroscopy

2017 · 2D Conductive Iron-Quinoid Magnets Ordering up to Tc = 105 K via Heterogenous Redox Chemistry

compound 2 black crystals · Single Crystal · Solid samples of 1, 1a and 2 on SiO2-coated Si wafer; 473 nm diode laser, 263 uW; 50x objective; 1800 grooves/mm grating

SpectroscopyUnspecified subtype

FT-IR and Raman spectroscopy

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 · KBr pellet FT-IR; custom Raman with 632.8 nm HeNe laser, about 8 mW

SpectroscopyUnspecified subtype

Raman spectroscopy

2017 · CoP nanoparticles embedded in P and N co-doped carbon as efficient bifunctional electrocatalyst for water splitting

CoP@PNC · Powder · DXR Microscope Raman spectrometer with 532 nm green semiconductor laser.

SpectroscopyUnspecified subtype

Raman spectroscopy

2017 · Defects as Color Centers: The Apparent Color of Metal-Organic Frameworks Containing Cu2+-Based Paddle-Wheel Units

conventional low-quality HKUST-1 SURMOF · Thin Film · Raman spectra used to identify characteristic splitting of symmetric carboxylate stretch vibration associated with dinuclear paddle-wheel units.

SpectroscopyUnspecified subtype

Raman spectroscopy

2017 · Fabrication of Hierarchical Porous Metal-Organic Framework Electrode for Aqueous Asymmetric Supercapacitor

HP-UiO-66 powder · Powder · LabRAM HR800 with 632.5 nm argon ion laser; compared bare UiO-66, Zn/Zr MOFs and HP-UiO-66.

SpectroscopyUnspecified subtype

Raman spectroscopy of pristine and Tl3+/Hg2+-loaded MOF

2017 · Fluorescent metal-organic frameworks for selective sensing of toxic cations (Tl3+, Hg2+) and highly oxidizing anions ((CrO4)2−, (Cr2O7)2−, (MnO4)−)

compound I after Tl3+ exposure for Raman spectroscopy · Powder · Excitation at 514 nm; N-S scattering peak compared before and after overnight exposure to 10 mM Tl(NO3)3 or HgCl2 solution.

SpectroscopyUnspecified subtype

Raman spectroscopy of pristine and Tl3+/Hg2+-loaded MOF

2017 · Fluorescent metal-organic frameworks for selective sensing of toxic cations (Tl3+, Hg2+) and highly oxidizing anions ((CrO4)2−, (Cr2O7)2−, (MnO4)−)

compound II after Tl3+ exposure for Raman spectroscopy · Powder · Excitation at 514 nm; N-S scattering peak compared before and after overnight exposure to 10 mM Tl(NO3)3 or HgCl2 solution.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · Graphitisation degree of carbon in YC-ZnO from D/G band intensity ratio.

SpectroscopyUnspecified subtype

polarized Raman spectroscopy

2017 · Multiple-Hydrogen-Bond Approach to Uncommon Pd(III) Oxidation State: A Pd-Br Chain with High Conductivity and Thermal Stability

Copper-luster rod-like single crystals of compound 3 · Single Crystal · Renishaw Raman spectrometer with He-Ne laser (632.8 nm); optical cryostat used below room temperature; spectra acquired from 10 to 300 K.

SpectroscopyUnspecified subtype

Raman spectroscopy (InVia, Renishaw)

2017 · TCNQ-doped Cu-metal organic framework as a novel conductometric immunosensing platform for the quantification of prostate cancer antigen

antibody-TCNQ-Cu3(BTC)2-SPE · Electrode · Cu3(BTC)2, TCNQ-Cu3(BTC)2 and antibody-TCNQ-Cu3(BTC)2 compared.

SpectroscopyUnspecified subtype

Raman spectroscopy

2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers

Ag-TCNQ thin film on SAM/Au · Thin Film · Raman bands of initial and final thin films assigned to monoanionic TCNQ ligand

SpectroscopyUnspecified subtype

variable-temperature Raman spectroscopy

2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers

Ag-TCNQ thin film on SAM/Au · Thin Film · Ag-TCNQ thin film measured at 300 K, 400 K and after cooling to 300 K

SpectroscopyUnspecified subtype

variable-temperature Raman spectroscopy

2017 · Thermally Driven Resistive Switching in Solution-Processable Thin Films of Coordination Polymers

Cu-TCNQ thin film on SAM/Au · Thin Film · Cu-TCNQ thin-film Raman spectra at 300 K and 370 K during switching-control experiment.

SpectroscopyUnspecified subtype

Raman spectroscopy

2016 · Electrochemical oxygen reduction catalysed by Ni3 (hexaiminotriphenylene)2

Ni3(HITP)2 thin film on indium tin oxide electrode · Electrode · Ni3(HITP)2 on ITO, unused, KOH-submerged, N2-cycled and O2-cycled; 457 nm excitation.

SpectroscopyUnspecified subtype

Raman spectroscopy

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 · carbon structure of as-synthesised NiP2@C composite

SpectroscopyUnspecified subtype

Raman spectroscopy

2016 · Superexchange Charge Transport in Loaded Metal Organic Frameworks

F4-TCNQ-loaded HKUST-1 SURMOF, 5 spray cycles · Thin Film · Bruker Senterra Raman microscope, 532 nm excitation, 60 s integration, 3 co-additions.

SpectroscopyUnspecified subtype

Raman spectroscopy

2016 · Superexchange Charge Transport in Loaded Metal Organic Frameworks

TCNQ-loaded HKUST-1 SURMOF, 10 spray cycles · Thin Film · Bruker Senterra Raman microscope, 532 nm excitation, 60 s integration, 3 co-additions.

SpectroscopyUnspecified subtype

Raman spectroscopy

2015 · A porous proton-relaying metal-organic framework material that accelerates electrochemical hydrogen evolution

NU-1000_Ni-S · Electrode · NU-1000_Ni-S sample irradiated with 514.5 nm laser; 60 s acquisition averaged over ten runs.

SpectroscopyUnspecified subtype

Raman spectroscopy, 532 nm excitation

2015 · Thin film thermoelectric metal-organic framework with high seebeck coefficient and low thermal conductivity

TCNQ-infiltrated Cu3(BTC)2 thin-film region A on quartz · Thin Film · Raman spectra collected across the partially infiltrated device along the yellow dotted line in Figure 1d; 2 um spot and about 0.5 mW laser power.

SpectroscopyUnspecified subtype

Raman spectroscopy

2014 · Tunable electrical conductivity in metal-organic framework thin-film devices

Cu3(BTC)2.xH2O film on borosilicate before and after TCNQ or H4-TCNQ adsorption · Thin Film · Cu3(BTC)2.xH2O film before and after TCNQ adsorption; TCNQ crystal reference

SpectroscopyUnspecified subtype

resonance Raman spectroscopy

1984 · Cofacial Assembly of Metallomacrocycles as an Approach to Controlling Lattice Architecture in Low-Dimensional Molecular Solids. Chemical, Structural, Oxidation-State, Transport, and Optical Properties of the Coordination Polymer [Fe(phthalocyaninato)(μ-pyrazine)]n and the Consequences of Halogen Doping

{[Fe(Pc)(mu-pyz)]I2.54}n, eq 5 · Pellet · Ar+ excitation at 5145 Angstrom; powders in spinning 5 mm Pyrex tubes; 180 deg backscattering geometry.

Raw method vocabulary

These are the exact source-preserving method strings consolidated by this technique group.

Show 111 reported method labels
Raw method labelMapped measurements
Raman spectroscopy78
FT-IR and Raman spectroscopy8
FTIR and Raman spectroscopy8
XRD with Rietveld refinement; ICP-OES/EDS composition; Raman support6
Raman spectroscopy (532 nm Ar ion laser)6
FTIR, Raman, XPS, EPR spectroscopy3
In situ Raman spectroscopy3
Electrical conductivity, Seebeck coefficient, Raman thermometry thermal conductivity, power factor and zT3
FT-IR, Raman, solid-state 13C NMR, XPS/EXAFS3
PXRD, FT-IR, Raman, XPS and TGA characterisation3
Raman spectroscopy and IRRAS2
Raman spectroscopy of pristine and Tl3+/Hg2+-loaded MOF2
Raman and FT-IR spectroscopy2
Variable-temperature Raman spectroscopy2
SEM/EDX, Raman and PXRD2
Raman spectroscopy (Renishaw inVia Raman)2
variable-temperature Raman spectroscopy2
FTIR, Raman, XPS, acid-digestion ESI-MS, ICP-OES and elemental analysis2
Raman spectroscopy, NRS-51002
FT-IR and Raman2
PXRD and Raman spectroscopy2
Confocal laser Raman spectroscopy, Horiba Jobin Yvon HR Evolution1
Raman spectroscopy and UV/vis/NIR absorption spectroscopy.1
Raman spectroscopy, 1064 nm1
Raman, XPS and EPR spectroscopy1
FT-IR and Raman spectroscopy.1
ATR-FTIR, Raman, XPS, SEM-EDX, XANES, EXAFS, UV-vis1
Raman spectroscopy and Raman mapping1
Raman spectroscopy, WITec CRM200 with 532 nm excitation1
Raman spectroscopy (532 nm, Horiba) and FT-IR/ATR-IR (Bruker Alpha)1
Raman and FTIR1
ex-situ Raman spectroscopy under N2 and H2O/N2 gas streams1
Raman spectroscopy and infrared comparison1
Temperature-dependent Raman spectroscopy; Renishaw Invia; 532 nm laser; Linkam THMS600 Ar-purged stage1
FTIR, XPS and Raman before/after TEA treatment1
Confocal Raman spectroscopy and 2D Raman mapping1
Raman spectroscopy at 532 nm.1
TEM, elemental mapping, GIXRD, FTIR and Raman1
XRD and Raman spectroscopy1
EDX, FTIR, and Raman spectroscopy1
in-situ Raman spectroscopy and optical microscopy1
Post-OER SEM, XPS, and Raman1
polarized Raman spectroscopy1
Raman spectroscopy, Bruker Senterra Raman spectrometer1
Raman spectroscopy, FT-IR, XPS and elemental analysis1
FT-IR and Raman spectroscopy compared with Ag4TTBQ and H6TTHQ1
inferred conductivity evidence from Raman, XPS/XAS and EIS1
IRRAS, Raman and XPS spectroscopy1
Raman spectroscopy, Renishaw 2000 laser, 532 nm argon ion laser1
resonance Raman spectroscopy1
SEM, TEM, XRD, Raman spectroscopy1
TG analysis, Raman spectroscopy, N2 BET1
XPS, Raman spectroscopy, TEM particle-size analysis1
N K-edge XANES, XPS, FT-IR and Raman spectroscopy1
Raman spectroscopy, Renishaw inVia Reflex, 488 nm excitation1
Raman spectroscopy and ATR-IR spectroscopy1
FT-IR, Raman and XRD1
FT-IR, Raman, XPS, EPR and TEM-EDS mapping1
XPS and Raman spectroscopy1
SEM and Raman after acid soaking1
ATR-FTIR and Raman spectroscopy1
XRD, FTIR, SEM, TEM/EDS, TGA, ICP, XPS, Raman, BET1
Resonance Raman spectroscopy, 0.85-m Spex 1401 double monochromator, 5145-A Ar+ excitation, 180 degree backscattering1
Raman spectroscopy, 532 nm excitation1
Raman, FT-IR and XPS spectroscopy1
Raman spectroscopy and FT-IR/UV-vis-NIR absorption1
post-OER HRTEM, Raman and XPS1
(TD-)DFT Raman calculation, B3LYP/def2-SVP with DFT-D3 in Turbomole; GFN2-xTB pre-relaxation1
Raman spectroscopy and infrared reflection absorption spectroscopy (IRRAS)1
TOF-SIMS depth profiling and confocal Raman control1
Raman spectroscopy and FT-IR spectroscopy1
Raman spectroscopy, Photon Design RSM-3101
In situ Raman spectroscopy during NO3RR1
Raman spectroscopy (InVia, Renishaw)1
XRD, Raman and FTIR1
ATR-FTIR and resonance Raman spectroscopy1
Raman thermometry1
Raman spectroscopy of discharged electrode1
Raman spectroscopy (Renishaw inVia Raman microscope)1
In situ Raman spectroscopy during PI activation1
Raman spectroscopy; Thermo Nicolet Nexus 870 with FT-Raman module; Nd-YAG 785 nm excitation1
Raman spectroscopy, 532 nm laser1
XRD, Raman and Li 1s XPS after discharge/charge1
Confocal Raman spectroscopy (WITec alpha-300 RAS+)1
Post-OER microscopy/XRD/XPS/XANES and in situ Raman1
in situ solid-state Raman spectroelectrochemistry1
pressure-dependent resonance Raman spectroscopy1
Raman spectroscopy with DFT-assisted vibrational assignment1
steady-state resonance Raman spectroscopy1
Room-temperature Raman spectroscopy, 532.12 nm laser1
SERS Raman, XPS, EPR and Cu K-edge XAS1
simulated Raman spectrum from DFT fragment1
post-test XRD/Raman/SEM/XPS1
Polarised confocal Raman spectroscopy; Witec Alpha 300 R; 532 nm Nd:YAG laser1
XPS, EPR, Raman and FTIR1
operando electrochemical resonance Raman spectroscopy1
Ex situ Raman spectroscopy of fresh and fully activated electrodes1
Operando Raman spectroscopy during first galvanostatic lithiation1
Ex situ Raman spectroscopy1
ex situ XPS, FTIR, and Raman during potassiation/depotassiation1
post-CV XPS, CV and in situ Raman during charge-discharge1
ATR-FTIR and Raman spectroscopy of electrolyte inside MOF Glass layer1
FT-IR, Raman and UV-Vis spectroscopy1
XRD, Raman spectroscopy, and XPS1
Electrochemical in situ Raman spectroscopy1
Raman, UV-vis and ZFC-FC magnetic susceptibility1
Raman spectroscopy (Horiba Jobin-Yvon HR800, 532 nm laser)1
Ex-situ Raman spectroscopy1
Raman spectroscopy and FTIR1
Raman, FTIR and XPS1
Raman spectroscopy using i-Raman Plus 785H portable spectrometer, 785 nm excitation1