Electrical Transport — A tribenzocoronene-based 2D conductive metal-organic framework for efficient energy storage

Measurement evidence

Electrical Transport

A tribenzocoronene-based 2D conductive metal-organic framework for efficient energy storage · Zhao J., Zhang T., Ren J. et al. · Chemical Communications · 2023 · 2978-2981

1 measurement group · 4 results

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

Two-probe conductivity

pressed Cu-TBC pellet · Pellet

Keithley 4200-SCS; gold wires fixed to sample side with silver colloid; voltage sweep -1.0 to 1.0 V; pressed pellet

Temperature
298
Atmosphere
ambient
Geometry
two-probe pressed pellet
Context
pristine Cu-TBC pellet
Measurement source
S15-S16 · Section 10. Electrical Conductivity Measurements · Fig. S8; Table S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Approximate conductivity at 360 Kapproximately 0.16 S m-1 at 360 K from Fig. S8bVisual Estimate
Approximate
S15 · Section 10 · Fig. S8b
Room-temperature electrical conductivityMarked as a best value within this paper6.8 x 10^-4 S cm-1 (two-probe pellet)SI Table
Exact Reported
S16 · Section 10 · Table S5
Room-temperature electrical conductivityMarked as a best value within this paperabout 0.068 S m-1 at room temperatureText
Approximate
p002 · Electrical properties · Fig. S8
Temperature-dependent conductivity trendconductivity increases nonlinearly from 298 to 360 K, typical semiconductor characteristicsText
Qualitative
p003 · Electrical properties · Fig. S8b