Electrochemistry Application — In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance

Measurement evidence

Electrochemistry Application

In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance · Wang Z., Sun B., Liao J. et al. · International Journal of Biological Macromolecules · 2024 · 127989

5 measurement groups · 16 results

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

cyclic voltammetry

50%-NiCAT@TOW membrane · Thin Film

Three-electrode setup in aqueous 3 M KCl; Ag/AgCl reference and Pt counter; 0 to 0.5 V voltage window; scan rates 5-200 mV s-1.

Atmosphere
aqueous 3 M KCl electrolyte
Geometry
three-electrode supercapacitor test
Context
50%-NiCAT@TOW flexible membrane electrode
Measurement source
p003 / journal page 3 · 2.5 Electrochemical characterization · Fig. 6c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CV scan-rate range5 mV s-1 to 200 mV s-1rangeText
Range
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6c
CV curve shaperectangular-like shape retainedQualitative
Qualitative
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6c

electrochemical impedance spectroscopy

NiCAT powder electrode · Electrode

Nyquist curve compared with 50%-NiCAT@TOW membrane electrode.

Atmosphere
aqueous 3 M KCl electrolyte
Geometry
three-electrode supercapacitor test
Context
NiCAT powder electrode control
Measurement source
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
NiCAT powder charge-transfer resistance Rct1.5 ohmText
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f
NiCAT powder equivalent series resistance Re4.5 ohmText
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f

electrochemical impedance spectroscopy

50%-NiCAT@TOW membrane · Thin Film

Nyquist curve in three-electrode setup; Re from high-frequency real-axis intercept and Rct from semicircle diameter.

Atmosphere
aqueous 3 M KCl electrolyte
Geometry
three-electrode supercapacitor test
Context
50%-NiCAT@TOW membrane electrode
Measurement source
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-NiCAT@TOW charge-transfer resistance RctMarked as a best value within this paper0.2 ohmText
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f
50%-NiCAT@TOW equivalent series resistance ReMarked as a best value within this paper2.2 ohmText
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6f

galvanostatic charge/discharge

NiCAT powder electrode · Electrode

NiCAT powder electrode compared with 50%-NiCAT@TOW at current densities of 0.5, 1, 2, 5 and 10 A g-1.

Atmosphere
aqueous 3 M KCl electrolyte
Geometry
three-electrode supercapacitor test
Context
pristine NiCAT powder electrode control
Measurement source
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
NiCAT powder specific capacitance at 0.5 A g-138.3 F g-1 at 0.5 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
NiCAT powder specific capacitance at 1 A g-120.3 F g-1 at 1 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
NiCAT powder specific capacitance at 10 A g-17.5 F g-1 at 10 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
NiCAT powder specific capacitance at 2 A g-114.0 F g-1 at 2 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
NiCAT powder specific capacitance at 5 A g-19.6 F g-1 at 5 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e

galvanostatic charge/discharge

50%-NiCAT@TOW membrane · Thin Film

Three-electrode setup in 3 M KCl; specific capacitance calculated by C = it/(m Delta V).

Atmosphere
aqueous 3 M KCl electrolyte
Geometry
three-electrode supercapacitor test
Context
50%-NiCAT@TOW flexible membrane electrode
Measurement source
p004 / journal page 4 · 2.5 Electrochemical characterization · Fig. 6d-e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
50%-NiCAT@TOW specific capacitance at 0.5 A g-1Marked as a best value within this paper109.9 F g-1 at 0.5 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
50%-NiCAT@TOW specific capacitance at 1 A g-153.1 F g-1 at 1 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
50%-NiCAT@TOW specific capacitance at 10 A g-18.1 F g-1 at 10 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
50%-NiCAT@TOW specific capacitance at 2 A g-126.0 F g-1 at 2 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e
50%-NiCAT@TOW specific capacitance at 5 A g-118.9 F g-1 at 5 A g-1Text
Rounded Reported
p009 / journal page 9 · 3.3 Electrochemical properties of EC-MOF@TOW membrane · Fig. 6e