Electrical Transport — Synthesis and Electric Properties of a Two-Dimensional Metal-Organic Framework Based on Phthalocyanine

Measurement evidence

Electrical Transport

Synthesis and Electric Properties of a Two-Dimensional Metal-Organic Framework Based on Phthalocyanine · Nagatomi H., Yanai N., Yamada T. et al. · Chemistry - A European Journal · 2018 · 1806-1810

2 measurement groups · 4 results

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

DC electrical conductivity versus temperature at constant voltage

pelletised Cu-CuPc · Pellet

150 mV applied; air; 25 to 80 C; temperature manually raised in 3 C increments every 15 min

Temperature
298-353
Atmosphere
air
Geometry
pellet with gold-wire contacts
Context
pristine framework pellet
Measurement source
1808 · main text · Figure S4b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
maximum electrical conductivity at 80 CMarked as a best value within this paper1.6 x 10^-6 S cm-1 at 80 C0.00016 S m-1Text
Rounded Reported
1806 and 1808 · Abstract; main text · Figure S4b
minimum electrical conductivity in 25-80 C range9.4 x 10^-8 S cm-10.0000094 S m-1Text
Rounded Reported
1808 · main text · Figure S4b

two-probe I-V measurement

pelletised Cu-CuPc · Pellet

I-V in air at room temperature; voltage scanned 0 to 300 mV

Temperature
room temperature
Atmosphere
air
Geometry
pellet with top and bottom gold wires, two-probe configuration
Context
pristine framework pellet
Measurement source
S2 · Electrical conductivity measurement · Figure S4a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
current at 300 mVapproximately 19 nA at 300 mV1.9e-8 Avisual estimate from Figure S4aFigure Axis
Approximate
S4 · Figure S4 caption · Figure S4a
room-temperature I-V behaviourohmic resistance confirmed from 0 to 300 mVText
Qualitative
1808 · main text · Figure S4a