Harmonised techniqueNon-exclusive mapping

Mott-Schottky analysis

Capacitance-potential Mott-Schottky measurements and simulations used for flat-band and carrier analyses.

28primary papers
49mapped measurements
150linked results
18raw 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.

49 measurements

SpectroscopyUnspecified subtype

photocurrent response, UV-vis DRS, Tauc plot, Mott-Schottky and PL

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

SCAPS-1D capacitance-voltage / Mott-Schottky simulation

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky plots for conduction-band positions

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

Mott-Schottky plot

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

Mott-Schottky plot

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

Mott-Schottky plot

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

Mott-Schottky plot

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

Electrochemistry ApplicationUnspecified subtype

Mott-Schottky and valence-band XPS band alignment

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

Mott-Schottky test at 500, 1000 and 1500 kHz

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

Mott-Schottky test at 500, 1000 and 1500 kHz

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

photocurrent, EIS, LSV, CV, and Mott-Schottky electrochemical analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky measurement

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

Mott-Schottky measurement

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

Electrochemistry ApplicationFlat-band analysis

Mott-Schottky flat-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

Mott-Schottky flat-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

Mott-Schottky measurements at 2500, 3000, and 3500 Hz

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Tauc plot and Mott-Schottky analysis

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

Mott-Schottky analysis

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.

Electrochemistry ApplicationUnspecified subtype

Mott-Schottky analysis

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

Mott-Schottky / potentiodynamic electrochemical impedance

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

Mott-Schottky / potentiodynamic electrochemical impedance

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

Mott-Schottky

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

Mott-Schottky

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky analysis

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

Mott-Schottky capacitance analysis

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.

Raw method vocabulary

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

Show 18 reported method labels
Raw method labelMapped measurements
Mott-Schottky analysis17
SCAPS-1D capacitance-voltage / Mott-Schottky simulation6
Mott-Schottky plot4
UV-vis diffuse reflectance, Tauc and Mott-Schottky3
Mott-Schottky flat-band analysis2
Mott-Schottky2
Mott-Schottky measurement2
Mott-Schottky test at 500, 1000 and 1500 kHz2
Mott-Schottky / potentiodynamic electrochemical impedance2
variable-temperature conductance, Hall and Mott-Schottky1
Mott-Schottky measurements at 2500, 3000, and 3500 Hz1
XPS valence band spectroscopy, diffuse reflectance spectroscopy, and Mott-Schottky analysis1
Mott-Schottky capacitance analysis1
Mott-Schottky and valence-band XPS band alignment1
photocurrent response, UV-vis DRS, Tauc plot, Mott-Schottky and PL1
Mott-Schottky plots for conduction-band positions1
Tauc plot and Mott-Schottky analysis1
photocurrent, EIS, LSV, CV, and Mott-Schottky electrochemical analysis1