Electrical Transport — Surface Structure Construction of Fibers in a Conductive Metal-Organic Framework/Metal/Cotton Electrode for Flexible Textile Supercapacitors

Measurement evidence

Electrical Transport

Surface Structure Construction of Fibers in a Conductive Metal-Organic Framework/Metal/Cotton Electrode for Flexible Textile Supercapacitors · Liu Y.-N., Feng L.-J., Bian S.-W. · ACS Applied Electronic Materials · 2022 · 4595-4604

2 measurement groups · 4 results

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

Four-point probe sheet resistance

CPA Au-plated cotton/PDA current collector · Electrode

Measured with RTS-9 four-probe instrument.

Geometry
Textile fabric sheet.
Context
Non-MOF Au/PDA/cotton current-collector control.
Measurement source
4596 · 2.4 Material Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Au nanoparticle mass loading on CPA4.4 mg cm-2Text
Exact Reported
4596 · 2.2.2 Electroless Plating Au Layers on the CP
CPA sheet resistanceMarked as a best value within this paper1 Ohm sq-1Text
Exact Reported
4596 · 2.2.2 Electroless Plating Au Layers on the CP

Four-point probe sheet resistance

CPAMOF Cu-MOF/Au/cotton electrode · Electrode

Measured with RTS-9 four-probe instrument after Cu-MOF growth.

Geometry
Textile composite electrode sheet.
Context
Conductive-MOF composite target electrode.
Measurement source
4596 · 2.4 Material Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Conductive Cu-MOF mass loading on CPAMOF0.5 mg cm-2Text
Exact Reported
4596 · 2.2.3 Growth of Conductive MOFs on the CPA
CPAMOF sheet resistanceMarked as a best value within this paper5 Ohm sq-1Text
Exact Reported
4596 · 2.2.3 Growth of Conductive MOFs on the CPA