Electrochemistry Application — From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies

Measurement evidence

Electrochemistry Application

From 0D to 2D: Microwave-assisted synthesis of electrically conductive metal-organic frameworks with controlled morphologies · Fang X., Choi J.Y., Lu C. et al. · Chemical Science · 2025 · 3168-3172

7 measurement groups · 11 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Cyclic voltammetry, capacitance and double-layer-capacitance ECSA analysis in 0.1 M TEBF4/acetonitrile.

0D Cu-HHTP/PTFE glassy-carbon electrode · Electrode

Three-electrode Biologic VSP-300 setup; Pt counter electrode; nonaqueous Ag/AgNO3 reference; scan rates for ECSA ranged 100-500 mV s-1.

Atmosphere
Electrolyte degassed with nitrogen.
Geometry
MOF/PTFE drop-cast glassy carbon working electrode.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
0D Cu-HHTP gravimetric capacitanceMarked as a best value within this paper47.27 F g-1Text
Exact Reported
main p.3171 · Electrochemical characterization · Fig. 4b
CV redox feature common to all morphologies-1.1 V vs. Ag/AgClText
Rounded Reported
main p.3171 · Electrochemical characterization · Fig. S14a
0D Cu-HHTP ECSAMarked as a best value within this paper5.63 mF cm-2Text
Exact Reported
main p.3171 · Electrochemical characterization · Fig. 4b, Fig. S14b, Fig. S15

Cyclic voltammetry, capacitance and double-layer-capacitance ECSA analysis in 0.1 M TEBF4/acetonitrile.

1D Cu-HHTP/PTFE glassy-carbon electrode · Electrode

Three-electrode Biologic VSP-300 setup; Pt counter electrode; nonaqueous Ag/AgNO3 reference; scan rates for ECSA ranged 100-500 mV s-1.

Atmosphere
Electrolyte degassed with nitrogen.
Geometry
MOF/PTFE drop-cast glassy carbon working electrode.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
1D Cu-HHTP gravimetric capacitanceabout 23 F g-1 from Fig. 4b barvisual estimate from bar/error plotVisual Estimate
Approximate
main p.3171 · Electrochemical characterization · Fig. 4b
1D Cu-HHTP ECSA3.26 mF cm-2Text
Exact Reported
main p.3171 · Electrochemical characterization · Fig. 4b, Fig. S14b, Fig. S15

Cyclic voltammetry, capacitance and double-layer-capacitance ECSA analysis in 0.1 M TEBF4/acetonitrile.

2D Cu-HHTP/PTFE glassy-carbon electrode · Electrode

Three-electrode Biologic VSP-300 setup; Pt counter electrode; nonaqueous Ag/AgNO3 reference; scan rates for ECSA ranged 100-500 mV s-1.

Atmosphere
Electrolyte degassed with nitrogen.
Geometry
MOF/PTFE drop-cast glassy carbon working electrode.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
2D Cu-HHTP gravimetric capacitanceabout 24 F g-1 from Fig. 4b barvisual estimate from bar/error plotVisual Estimate
Approximate
main p.3171 · Electrochemical characterization · Fig. 4b
2D Cu-HHTP ECSA3.53 mF cm-2Text
Exact Reported
main p.3171 · Electrochemical characterization · Fig. 4b, Fig. S14b, Fig. S15

Electrochemical impedance spectroscopy in 0.1 M TEBF4/acetonitrile.

0D Cu-HHTP/PTFE glassy-carbon electrode · Electrode

Three-electrode Biologic VSP-300 setup using MOF/PTFE glassy-carbon electrodes.

Atmosphere
Electrolyte degassed with nitrogen.
Geometry
MOF/PTFE drop-cast glassy carbon working electrode.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
main p.3171 · Electrochemical characterization · Fig. 4c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
0D Cu-HHTP EIS resistance trendMarked as a best value within this paper0D shows less resistance than 1D and 2DText
Qualitative
main p.3171 · Electrochemical characterization · Fig. 4c

Transient photocurrent response under 300 W Xe lamp illumination.

0D Cu-HHTP/Nafion ITO photocurrent electrode · Electrode

0.5 M Na2SO4 electrolyte; MOF/Nafion slurry drop-cast on ITO glass; working electrode back-illuminated through ITO.

Atmosphere
Aqueous electrolyte prepared with degassed water.
Geometry
MOF/Nafion ITO electrode, back-illumination.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
0D Cu-HHTP transient photocurrent plateauMarked as a best value within this paperabout 1.3 mA cm-2 during illumination from Fig. 4dvisual estimate from plotVisual Estimate
Approximate
main p.3171 · Electrochemical characterization · Fig. 4d

Transient photocurrent response under 300 W Xe lamp illumination.

1D Cu-HHTP/Nafion ITO photocurrent electrode · Electrode

0.5 M Na2SO4 electrolyte; MOF/Nafion slurry drop-cast on ITO glass; working electrode back-illuminated through ITO.

Atmosphere
Aqueous electrolyte prepared with degassed water.
Geometry
MOF/Nafion ITO electrode, back-illumination.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
1D Cu-HHTP transient photocurrent plateauabout 0.6 mA cm-2 during illumination from Fig. 4dvisual estimate from plotVisual Estimate
Approximate
main p.3171 · Electrochemical characterization · Fig. 4d

Transient photocurrent response under 300 W Xe lamp illumination.

2D Cu-HHTP/Nafion ITO photocurrent electrode · Electrode

0.5 M Na2SO4 electrolyte; MOF/Nafion slurry drop-cast on ITO glass; working electrode back-illuminated through ITO.

Atmosphere
Aqueous electrolyte prepared with degassed water.
Geometry
MOF/Nafion ITO electrode, back-illumination.
Context
Electrode composite containing pristine Cu-HHTP active powder.
Measurement source
SI p.S2 · Electrochemical Measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
2D Cu-HHTP transient photocurrent plateauabout 0.5 mA cm-2 during illumination from Fig. 4dvisual estimate from plotVisual Estimate
Approximate
main p.3171 · Electrochemical characterization · Fig. 4d