Electrical Transport — Conductive MOFs as bifunctional oxygen electrocatalysts for all-solid-state Zn-air batteries

Measurement evidence

Electrical Transport

Conductive MOFs as bifunctional oxygen electrocatalysts for all-solid-state Zn-air batteries · Pan N., Zhang H., Yang B. et al. · Chemical Communications · 2020 · 13615-13618

2 measurement groups · 2 results

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

four-point probe conductivity

[Ni6(HHTP)3(H2O)x]n powder/crystals · Powder

Room-temperature conductivity of resultant catalyst measured using ST2722 and ST2643.

Temperature
room temperature
Atmosphere
not specified
Geometry
four-point probe
Context
pristine conductive MOF control
Measurement source
2 · Materials and measurements · Table S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
room-temperature conductivityMarked as a best value within this paper0.15 S m-1SI Table
Exact Reported
21 · Additional Figures · Table S2

four-point probe conductivity

[Ni5.7Ru0.3(HHTP)3(H2O)x]n powder · Powder

Room-temperature conductivity of Ru-doped Ni-HHTP catalyst measured using ST2722 and ST2643.

Temperature
room temperature
Atmosphere
not specified
Geometry
four-point probe
Context
pristine mixed-metal conductive MOF
Measurement source
2 · main text · Table S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
room-temperature conductivity0.05 S m-1Text
Exact Reported
2 · main text · Table S2