Electrical Transport — Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance

Measurement evidence

Electrical Transport

Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance · Shukla S., Joshi N.N., Kadian S. et al. · Journal of Materials Chemistry C · 2024 · 3886-3901

9 measurement groups · 11 results

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

CV-derived charge mobility calculation

Cu-Try MOF graphite paste electrode (E) · Electrode

Mobility calculated from diffusion coefficient and Randles-Sevcik relation; below 0.1 cm^2 V^-1 s^-1 interpreted as hopping transport

Measurement source
3896 · Electrochemical behavior studies · Equations 1-2; Fig. 9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
E charge mobility1.08e-07Text
Exact Reported
3896 · Electrochemical behavior studies · Eqns 1-2; Fig. 9
E log Ip vs log v^1/2 R20.982Figure Axis
Rounded Reported
3898 · Electrochemical behavior studies · Fig. 9

Electrochemical impedance spectroscopy (EIS)

Cu-Co-Try MOF graphite paste electrode (P1) · Electrode

0.1 N HCl; open-circuit initial voltage; 0.1 Hz to 100 kHz; 5 mV amplitude

Measurement source
3888, 3896 · Electrochemical measurements; Electrochemical behavior studies · Fig. 9(f)
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Nyquist/Rct qualitative orderMarked as a best value within this paperRct order: P1 lowest; P4 highest; P2 approximately P3 intermediateText
Qualitative
3896 · Electrochemical behavior studies · Fig. 9(f)

CV-derived charge mobility calculation

Cu-Co-Try MOF graphite paste electrode (P1) · Electrode

Mobility calculated from diffusion coefficient and Randles-Sevcik relation; below 0.1 cm^2 V^-1 s^-1 interpreted as hopping transport

Measurement source
3896 · Electrochemical behavior studies · Equations 1-2; Fig. 9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
P1 charge mobility0.00125Text
Exact Reported
3896 · Electrochemical behavior studies · Eqns 1-2; Fig. 9
P1 log Ip vs log v^1/2 R20.989Figure Axis
Rounded Reported
3898 · Electrochemical behavior studies · Fig. 9

Electrochemical impedance spectroscopy (EIS)

Cu-Zn-Try MOF graphite paste electrode (P2) · Electrode

0.1 N HCl; open-circuit initial voltage; 0.1 Hz to 100 kHz; 5 mV amplitude

Measurement source
3888, 3896 · Electrochemical measurements; Electrochemical behavior studies · Fig. 9(f)
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

CV-derived charge mobility calculation

Cu-Zn-Try MOF graphite paste electrode (P2) · Electrode

Mobility calculated from diffusion coefficient and Randles-Sevcik relation; below 0.1 cm^2 V^-1 s^-1 interpreted as hopping transport

Measurement source
3896 · Electrochemical behavior studies · Equations 1-2; Fig. 9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
P2 charge mobilityMarked as a best value within this paper0.00142Text
Exact Reported
3896 · Electrochemical behavior studies · Eqns 1-2; Fig. 9
P2 log Ip vs log v^1/2 R20.981Figure Axis
Rounded Reported
3898 · Electrochemical behavior studies · Fig. 9

Electrochemical impedance spectroscopy (EIS)

Cu-Er-Try MOF graphite paste electrode (P3) · Electrode

0.1 N HCl; open-circuit initial voltage; 0.1 Hz to 100 kHz; 5 mV amplitude

Measurement source
3888, 3896 · Electrochemical measurements; Electrochemical behavior studies · Fig. 9(f)
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

CV-derived charge mobility calculation

Cu-Er-Try MOF graphite paste electrode (P3) · Electrode

Mobility calculated from diffusion coefficient and Randles-Sevcik relation; below 0.1 cm^2 V^-1 s^-1 interpreted as hopping transport

Measurement source
3896 · Electrochemical behavior studies · Equations 1-2; Fig. 9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
P3 charge mobility0.000158Text
Exact Reported
3896 · Electrochemical behavior studies · Eqns 1-2; Fig. 9
P3 log Ip vs log v^1/2 R20.984Figure Axis
Rounded Reported
3898 · Electrochemical behavior studies · Fig. 9

Electrochemical impedance spectroscopy (EIS)

Cu-Yb-Try MOF graphite paste electrode (P4) · Electrode

0.1 N HCl; open-circuit initial voltage; 0.1 Hz to 100 kHz; 5 mV amplitude

Measurement source
3888, 3896 · Electrochemical measurements; Electrochemical behavior studies · Fig. 9(f)
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

CV-derived charge mobility calculation

Cu-Yb-Try MOF graphite paste electrode (P4) · Electrode

Mobility calculated from diffusion coefficient and Randles-Sevcik relation; below 0.1 cm^2 V^-1 s^-1 interpreted as hopping transport

Measurement source
3896 · Electrochemical behavior studies · Equations 1-2; Fig. 9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
P4 charge mobility0.000151Text
Exact Reported
3896 · Electrochemical behavior studies · Eqns 1-2; Fig. 9
P4 log Ip vs log v^1/2 R20.957Figure Axis
Rounded Reported
3898 · Electrochemical behavior studies · Fig. 9