Electrical Transport — Boosting electrocatalytic CO2 reduction reaction over viologen-functionalized metal-organic frameworks by enhancement of electron-transfer capacity

Measurement evidence

Electrical Transport

Boosting electrocatalytic CO2 reduction reaction over viologen-functionalized metal-organic frameworks by enhancement of electron-transfer capacity · Dong Y.-L., Jing Z.-Y., Wu Q.-J. et al. · Journal of Materials Chemistry A · 2023 · 8739-8746

6 measurement groups · 6 results

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

pressed-pellet two-contact probe I-V

Por(Co)-MOF · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity0.70 x 10^-7 S m^-1Text
Exact Reported
p025 · Supporting figures · Fig. S24

pressed-pellet two-contact probe I-V

Vg-MOF · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity0.53 x 10^-7 S m^-1Visual Estimate
Approximate
p025 · Supporting figures · Fig. S24

pressed-pellet two-contact probe I-V

Vg-Por(Co)-MOF(1:1) · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity0.88 x 10^-7 S m^-1Visual Estimate
Approximate
p025 · Supporting figures · Fig. S24

pressed-pellet two-contact probe I-V

Vg-Por(Co)-MOF(2:1) · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity1.54 x 10^-7 S m^-1Visual Estimate
Approximate
p025 · Supporting figures · Fig. S24

pressed-pellet two-contact probe I-V

Vg-Por(Co)-MOF(5:1) · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity1.78 x 10^-7 S m^-1Visual Estimate
Approximate
p025 · Supporting figures · Fig. S24

pressed-pellet two-contact probe I-V

Vg-Por(Co)-MOF(9:1) · Powder

MOF powder pressed in 6 mm die for 5 min at approximately 1000 psi; conductivity measured in air by two-contact probe.

Atmosphere
air
Geometry
pressed pellet, two-contact probe
Context
pristine MOF series
Measurement source
p025 · Supporting figures · Fig. S24
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk electrical conductivity5.60 x 10^-7 S m^-1Text
Exact Reported
p025 · Supporting figures · Fig. S24