Electrical Transport — A semiconducting uranium-organic framework based on a tetrathiafulvalene derivative

Measurement evidence

Electrical Transport

A semiconducting uranium-organic framework based on a tetrathiafulvalene derivative · Zhai F., Li H., Gui D. et al. · Dalton Transactions · 2022

1 measurement group · 6 results

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

Four-probe I-V conductivity measurement.

SCU-125 pressed pellets · Pellet

25 deg C +/- 2 deg C; voltage swept from -5 to 5 V; four samples with different thicknesses; I-V curves repeated three times for each sample.

Temperature
298
Geometry
Pressed pellets, 3 mm diameter, thicknesses 0.048-0.093 cm; hydraulic pressing under 3 MPa reported in SI.
Context
pristine_framework
Measurement source
16449 · Results · Table 1 and Figure S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Average electrical conductivityMarked as a best value within this paper2.2(2) x 10^-7 S cm^-1(2) x 10^-7Table
Exact Reported
16451 · Table 1 · Table 1
Electrical conductivity, 0.048 cm pellet2.1 x 10^-7 S cm^-1Table
Exact Reported
16451 · Table 1 · Table 1
Electrical conductivity, 0.049 cm pellet1.9 x 10^-7 S cm^-1Table
Exact Reported
16451 · Table 1 · Table 1
Electrical conductivity, 0.079 cm pellet2.3 x 10^-7 S cm^-1Table
Exact Reported
16451 · Table 1 · Table 1
Electrical conductivity, 0.093 cm pellet2.3 x 10^-7 S cm^-1Table
Exact Reported
16451 · Table 1 · Table 1
I-V responseCurrent I was proportional to voltage V over -5 to 5 VText
Qualitative
16449 · Results · Figure S4