SpectroscopyUnspecified subtype
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 · Optoelectronic behaviour and semiconductor band structure of Ni2DDA.
Electrochemistry ApplicationUnspecified subtype
2026 · Microenvironment modulation in heterometallic MOFs for tailoring electron/proton transport and hydrophilicity toward photocatalytic hydrogen production
Ni-Ca coated electrochemical electrode · Electrode
Electrochemistry ApplicationUnspecified subtype
2026 · Microenvironment modulation in heterometallic MOFs for tailoring electron/proton transport and hydrophilicity toward photocatalytic hydrogen production
Ni-Sr coated electrochemical electrode · Electrode
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/Cu3(HHTP) model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/Cu-MoF model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/Fe2(DSBDC) model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/Mn2(DSBDC) model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/NTU-09 model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Computational ModellingSimulation
2025 · Computational Modelling of Lead Free FASnI2Br with Copper-Doped Strontium Titanate and Conductive Metal-Organic Frameworks as Charge Transport Layers
FTO/CSTO/FASnI2Br/Sr-MoF model device · Model · Voltage sweep from -0.8 to 0.8 V at 1 MHz.
Electrochemistry ApplicationUnspecified subtype
2025 · Discovery of Dual Ion-Electron Conductivity of Metal-Organic Frameworks via Machine Learning-Guided Experimentation
MOF 1 activated/vacuum-dried pellet · Pellet · 1/C2 plotted against applied potential using real impedance at 1 kHz in dark conditions; flat-band potential from x-axis extrapolation.
Electrochemistry ApplicationUnspecified subtype
2025 · Discovery of Dual Ion-Electron Conductivity of Metal-Organic Frameworks via Machine Learning-Guided Experimentation
MOF 2 activated/vacuum-dried pellet · Pellet · 1/C2 plotted against applied potential using real impedance at 1 kHz in dark conditions; flat-band potential from x-axis extrapolation.
Electrical TransportFlat-band analysis
2025 · Extension of charge separation distance over isolated dual-metal sites in metal-organic frameworks for efficient CO2 photoreduction
CuCo-THQ coated FTO photoelectrode · Electrode · Three-electrode CHI 660E measurement; potential range -0.8 to 1.0 V at constant frequency.
Electrochemistry ApplicationUnspecified subtype
2025 · Metal-halide porous framework superlattices
PbI2@NU-1000 single crystals · Single Crystal · 0.2 M Na2SO4 pH 6.8; N2 bubbled >=30 min; glassy carbon electrode
Electrochemistry ApplicationUnspecified subtype
2025 · Metal-halide porous framework superlattices
PbI2@PCN-606 single crystals · Single Crystal · 0.2 M Na2SO4 pH 6.8; N2 bubbled >=30 min; glassy carbon electrode
Electrochemistry ApplicationUnspecified subtype
2025 · Metal-halide porous framework superlattices
PbI2@PCN-609 single crystals · Single Crystal · 0.2 M Na2SO4 pH 6.8; N2 bubbled >=30 min; glassy carbon electrode
Electrochemistry ApplicationUnspecified subtype
2025 · Metal-halide porous framework superlattices
PbI2@PCN-700 single crystals · Single Crystal · 0.2 M Na2SO4 pH 6.8; N2 bubbled >=30 min; glassy carbon electrode
Electrical TransportUnspecified subtype
2025 · Piezoelectric-mediated two-dimensional copper-based metal–organic framework for synergistic sonodynamic and cuproptosis-driven tumor therapy
CM-coated FTO working electrode · Electrode · Valence band potential, optical band gap and flat-band potential measured/deduced; Mott-Schottky in 0.5 M sodium sulfate at 1000 Hz.
Electrochemistry ApplicationUnspecified subtype
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
All reported TCPP/PMOF samples · Unknown · Mott-Schottky plots measured using electrochemical workstation with Ag/AgCl reference electrode, Pt working electrode, 0.1 M Na2SO4 electrolyte; VB from XPS.
Electrochemistry ApplicationFrequency dependent
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 · Samples coated on FTO, 1 x 1 cm2; Pt counter electrode; Ag/AgCl reference; 0.1 M sodium sulfate electrolyte.
Electrochemistry ApplicationFrequency dependent
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 · Samples coated on FTO, 1 x 1 cm2; Pt counter electrode; Ag/AgCl reference; 0.1 M sodium sulfate electrolyte.
Electrical TransportUnspecified subtype
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 · electrochemical workstation VersaSTAT4-400; comparative curves for CG, NC, and NCCG-15
Electrochemistry ApplicationUnspecified subtype
2024 · Photocatalytic Hydrogen Peroxide Production through Functionalized Semiconductive Metal-Organic Frameworks
EFB-MOF/PTFE working electrode · Electrode · Electrochemical Mott-Schottky plots at 1, 2, and 3 kHz in 0.5 M Na2SO4 using Ag/AgCl reference.
Electrical TransportUnspecified subtype
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 · Positive slope used to assign n-type semiconductor behaviour; flat-band potential read from Mott-Schottky plot
Electrical TransportUnspecified subtype
2023 · Metal-Organic Framework Glass Catalysts from Melting Glass-Forming Cobalt-Based Zeolitic Imidazolate Framework for Boosting Photoelectrochemical Water Oxidation
Co-agZIF-62/NiO/BiVO4 photoanode · Electrode · Measured at 1 kHz under dark conditions; carrier concentrations calculated
Electrochemistry ApplicationUnspecified subtype
2023 · Redox-Active Mixed-Linker Metal–Organic Frameworks with Switchable Semiconductive Characteristics for Tailorable Chemiresistive Sensing
Mn2[TTF]x[NiS4]1-x FTO working electrodes · Electrode · CHI660E workstation in 0.1 M Na2SO4 aqueous solution; three-electrode system with Pt counter and Ag/AgCl reference; frequencies 500, 750, 1000 Hz.
Electrochemistry ApplicationUnspecified subtype
2023 · Zeolites as a Class of Semiconductors for High-Performance Electrically Transduced Sensing
Na-ZSM-5 (9.8) · Powder · Three-electrode configuration in 0.2 M sodium sulfate at 1000, 2000, and 3000 Hz
Electrical TransportUnspecified subtype
2022 · A one-dimensional conductive metal-organic framework with extended π-d conjugated nanoribbon layers
DDA-Cu film two-terminal device on Si/SiO2 · Thin Film · conductance 25-350 K; Hall at 298 K; van der Pauw
Electrochemistry ApplicationFlat-band analysis
2022 · Bromo- and iodo-bridged building units in metal-organic frameworks for enhanced carrier transport and CO2 photoreduction by water vapor
As-synthesised TMOF-10-NH2(Br) · Single Crystal · Photoelectrochemical/electrochemical analysis; potentials reported vs Ag/AgCl and converted to NHE at pH 7.
Electrochemistry ApplicationFlat-band analysis
2022 · Bromo- and iodo-bridged building units in metal-organic frameworks for enhanced carrier transport and CO2 photoreduction by water vapor
As-synthesised TMOF-10-NH2(I) · Single Crystal · Photoelectrochemical/electrochemical analysis; potentials reported vs Ag/AgCl and converted to NHE at pH 7.
Electrochemistry ApplicationFrequency dependent
2022 · Constructing a Redox-Active Cu(I)-Pyridyltriazine Framework for Catalytic Photoreduction of Nitrobenzenes and Carboxylic Cyclization of Alkynol with CO2
Cu(I)-TPT coated ITO photoelectrochemical electrode · Electrode · Three-electrode system in 0.1 M Na2SO4 aqueous solution with Cu(I)-TPT-coated ITO working electrode, Pt counter, Ag/AgCl reference.
Electrochemistry ApplicationUnspecified subtype
2022 · Fe–O–Zr in MOF for effective photo-Fenton Bisphenol A degradation: Boosting mechanism of electronic transmission
FeUiO-1 powder/FTO electrochemical electrode · Electrode · Mott-Schottky curves at 500, 750 and 1000 Hz.
Electrochemistry ApplicationUnspecified subtype
2022 · Fe–O–Zr in MOF for effective photo-Fenton Bisphenol A degradation: Boosting mechanism of electronic transmission
UiO-66 powder/FTO electrochemical electrode · Electrode · SI Fig. S10 reports UiO-66 Mott-Schottky band-edge labels.
Electrochemistry ApplicationUnspecified subtype
2022 · Highly Effective Generation of Singlet Oxygen by an Imidazole-Linked Robust Photosensitizing Covalent Organic Framework
as-synthesized PyPor-COF powder · Powder · 0.5 M Na2SO4, pH = 11, Ag/AgCl electrode; band positions converted to NHE.
Electrochemistry ApplicationUnspecified subtype
2022 · Large π-Conjugated Metal-Organic Frameworks for Infrared-Light-Driven CO2Reduction
TNP-MOF crystals · Single Crystal · Mott-Schottky in 0.2 M Na2SO4; Tauc plot for band gap
Electrical TransportUnspecified subtype
2022 · Pd-Embedded Ti Metal–Organic Framework Nanostructures for Photocatalytic Reductive N-Formylation of Nitroarenes in Water
Ti-MOF · Powder · Dark measurement at pH 6.8 and bias frequencies 500, 1000, and 1500 Hz; photoelectrochemical setup used 0.1 M aqueous Na2SO4 electrolyte, photocatalyst-coated FTO working electrode, Pt counter electrode, and Ag/AgCl reference.
SpectroscopyUnspecified subtype
2022 · Ultra-thin Two-Dimensional Trimetallic Metal-Organic Framework for Photocatalytic Reduction of CO2
Ni-BDC nanosheets · Nanosheet · powder UV-vis plus Mott-Schottky-derived band positions
SpectroscopyUnspecified subtype
2022 · Ultra-thin Two-Dimensional Trimetallic Metal-Organic Framework for Photocatalytic Reduction of CO2
NiZr-BDC nanosheets · Nanosheet · powder UV-vis plus Mott-Schottky-derived band positions
SpectroscopyUnspecified subtype
2022 · Ultra-thin Two-Dimensional Trimetallic Metal-Organic Framework for Photocatalytic Reduction of CO2
NiZrCu-BDC nanosheets · Nanosheet · powder UV-vis plus Mott-Schottky-derived band positions
Electrochemistry ApplicationUnspecified subtype
2021 · Effective visible-light CO2 photoreduction over (metallo)porphyrin-based metal–organic frameworks to achieve useful hydrocarbons
PCN-222(Fe)-modified GCE · Electrode · Mott-Schottky diagrams measured at different frequencies for PCN-222(Fe), PCN-222(Co), PCN-222(Ni), and PCN-222(Cu). SI electrode: polished glassy carbon electrode, MOF dispersed in water (1 mg/mL), catalyst suspension dropped twice onto GCE and dried at RT; BAS three-electrode cell with Pt counter, Ag/AgCl reference, 0.2 M Na2SO4 electrolyte deoxygenated with N2.
Electrochemistry ApplicationUnspecified subtype
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/Nafion thin film on ITO · Electrode · Flat-band potential from x-axis intercept of linear Mott-Schottky fit; assumed as conduction band.
Electrochemistry ApplicationUnspecified subtype
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/Nafion thin film on ITO · Electrode · Flat-band potential from x-axis intercept of linear Mott-Schottky fit; assumed as conduction band.
Electrochemistry ApplicationUnspecified subtype
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 · 0.2 M Na2SO4 aqueous solution; CUCs-MIL-88B-Fe electrode.
Electrochemistry ApplicationUnspecified subtype
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 · 0.2 M Na2SO4 aqueous solution; 500 and 1000 Hz traces in SI Fig. S1b.
Electrochemistry ApplicationUnspecified subtype
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
bare Fe2O3 · Electrode · Mott-Schottky measurements at 1 kHz under dark conditions; carrier density estimated from slopes.
Electrochemistry ApplicationUnspecified subtype
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
Fe2O3@0.1Co · Electrode · Mott-Schottky measurements at 1 kHz under dark conditions; carrier density estimated from slopes.
Electrochemistry ApplicationUnspecified subtype
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
Fe2O3@0.1Co@0.8MIm · Electrode · Mott-Schottky measurements at 1 kHz under dark conditions; carrier density estimated from slopes.
Electrochemistry ApplicationUnspecified subtype
2018 · In situ growth of ultrathin Co-MOF nanosheets on Α-Fe2O3 hematite nanorods for efficient photoelectrochemical water oxidation
Fe2O3@0.8MIm · Electrode · Mott-Schottky measurements at 1 kHz under dark conditions; carrier density estimated from slopes.
Electrochemistry ApplicationUnspecified subtype
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 · Supplemental Mott-Schottky plots of bare alpha-Fe2O3 and surface-modified alpha-Fe2O3 films with varied Co/MIm ratios.
Electrochemistry ApplicationUnspecified subtype
2014 · Characterization of a copper phosphate triazole metal organic framework material (Cu3PO4(C2N3H 2)2OH) and oxygen evolution studies
Sintered Cu3PO4(C2N3H2)2OH pellet electrode · Pellet · Mott-Schottky characteristic plotted at 10 kHz; response analyser with 10 mV perturbing signal over 10^-3-10^5 Hz used for capacitance measurements; pH ~7.
No mapped measurement matches these filters.