Electrical Transport — Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors

Measurement evidence

Electrical Transport

Electronic Doping of Metal-Organic Frameworks for High-Performance Flexible Micro-Supercapacitors · He Y., Yang S., Fu Y. et al. · Small Structures · 2021 · 2000095

4 measurement groups · 7 results

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

van der Pauw method (Lakeshore Hall Testing System)

BQ@Cu3(BTC)2 pressed pellet for conductivity · Pellet

Conductivity measured at 298 K by van der Pauw method after peeling film from Cu foil, grinding, pressing a 1.2 cm diameter, 300 um thick pellet under about 1 GPa, and contacting four silver wires with conductive silver paste/plastic.

Temperature
298
Atmosphere
vacuum below 0.1 Pa in environmental cavity
Geometry
pressed pellet, diameter 1.2 cm, thickness 300 um, four silver-wire contacts for van der Pauw measurement
Context
MOF thin-film intrinsic transport
Measurement source
Experimental Section, Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BQ@Cu3(BTC)2 electrical conductivity0.169 mS m^-1Text
Exact Reported
4 · Results and Discussion · Figure 3g,h
BQ@Cu3(BTC)2 conductivity enhancement versus undoped Cu3(BTC)215 times higher than undoped Cu3(BTC)2Text
Exact Reported
4 · Results and Discussion · Figure 3h

van der Pauw method (Lakeshore Hall Testing System)

Cu3(BTC)2 pressed pellet for conductivity · Pellet

Conductivity measured at 298 K by van der Pauw method after peeling film from Cu foil, grinding, pressing a 1.2 cm diameter, 300 um thick pellet under about 1 GPa, and contacting four silver wires with conductive silver paste/plastic.

Temperature
298
Atmosphere
vacuum below 0.1 Pa in environmental cavity
Geometry
pressed pellet, diameter 1.2 cm, thickness 300 um, four silver-wire contacts for van der Pauw measurement
Context
MOF thin-film intrinsic transport
Measurement source
Experimental Section, Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu3(BTC)2 electrical conductivity0.0114 mS m^-1Text
Exact Reported
4 · Results and Discussion · Figure 3g,h

van der Pauw method (Lakeshore Hall Testing System)

PMDI@Cu3(BTC)2 pressed pellet for conductivity · Pellet

Conductivity measured at 298 K by van der Pauw method after peeling film from Cu foil, grinding, pressing a 1.2 cm diameter, 300 um thick pellet under about 1 GPa, and contacting four silver wires with conductive silver paste/plastic.

Temperature
298
Atmosphere
vacuum below 0.1 Pa in environmental cavity
Geometry
pressed pellet, diameter 1.2 cm, thickness 300 um, four silver-wire contacts for van der Pauw measurement
Context
MOF thin-film intrinsic transport
Measurement source
Experimental Section, Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PMDI@Cu3(BTC)2 conductivity enhancement versus undoped Cu3(BTC)212 times higher than undoped Cu3(BTC)2Text
Exact Reported
4 · Results and Discussion · Figure 3h
PMDI@Cu3(BTC)2 electrical conductivity0.136 mS m^-1Text
Exact Reported
4 · Results and Discussion · Figure 3g,h

van der Pauw method (Lakeshore Hall Testing System)

TCNQ@Cu3(BTC)2 pressed pellet for conductivity · Pellet

Conductivity measured at 298 K by van der Pauw method after peeling film from Cu foil, grinding, pressing a 1.2 cm diameter, 300 um thick pellet under about 1 GPa, and contacting four silver wires with conductive silver paste/plastic.

Temperature
298
Atmosphere
vacuum below 0.1 Pa in environmental cavity
Geometry
pressed pellet, diameter 1.2 cm, thickness 300 um, four silver-wire contacts for van der Pauw measurement
Context
MOF thin-film intrinsic transport
Measurement source
Experimental Section, Characterization
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
TCNQ@Cu3(BTC)2 conductivity enhancement versus undoped Cu3(BTC)2Marked as a best value within this paper41 times higher than undoped Cu3(BTC)2Text
Exact Reported
4 · Results and Discussion · Figure 3h
TCNQ@Cu3(BTC)2 electrical conductivityMarked as a best value within this paper0.463 mS m^-1Text
Exact Reported
4 · Results and Discussion · Figure 3g,h