Electrical Transport — Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor

Measurement evidence

Electrical Transport

Microwave discharge for rapid introduction of bimetallic-synergistic configuration to conductive catecholate toward long-term supercapacitor · Jiang H., Xian J., Hu R. et al. · Chemical Engineering Journal · 2023 · 140804

1 measurement group · 1 results

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

EIS charge-transfer resistance comparison of carbon cloth, supported Zn,Ni-CAT-T4 and Zn,Ni-CAT-T4 powder

Zn,Ni-CAT-T4 powder · Powder

SI Figure S15 context; used by authors to infer intrinsic conductivity of Zn,Ni-CAT-T4 powder without conductive substrate.

Geometry
Powder electrode without conductive carbon-cloth substrate
Context
Intrinsic conductive-MOF powder compared with carbon cloth-supported electrode.
Measurement source
7 · 3.4. Energy storage performance of Zn,Ni-CAT · Figure S15
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Charge-transfer resistance of Zn,Ni-CAT-T4 powder7.8 Ohm cm-1Text
Exact Reported
7 · 3.4. Energy storage performance of Zn,Ni-CAT · Figure S15a