Electrical Transport — Controlling the Spatiotemporal Self-Organization of Stimuli-Responsive Nanocrystals under Out-of-Equilibrium Conditions

Measurement evidence

Electrical Transport

Controlling the Spatiotemporal Self-Organization of Stimuli-Responsive Nanocrystals under Out-of-Equilibrium Conditions · Damacet P., Shehayeb E.O., Mirica K.A. · Journal of the American Chemical Society · 2025 · 1584-1594

1 measurement group · 5 results

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

Four-point probe bulk pellet conductivity

2D RD Ni3(HITP)2 interface particles · Powder

26-31 mg of each zone pressed in 6 mm die at approx. 1050 psi for 20 min; Signatone tungsten carbide four-point probe with 1.25 mm spacing.

Geometry
pressed pellet, 6 mm die
Context
pristine 2D RD-derived framework particles
Measurement source
68 · S10.7 Electrical properties · Tables S3-S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk pellet electrical conductivity range across 2D zones0.1 to 0.5 S cm-1Text
Range
69 · S10.7 Electrical properties · Tables S3-S4
bulk pellet conductivity, interface particles0.101 +/- 0.009 S cm-1+/- 0.009 S cm-1Visual Estimate
Rounded Reported
69 · S10.7 Electrical properties · Table S4
bulk pellet conductivity, Zone 1 particlesMarked as a best value within this paper0.535 +/- 0.048 S cm-1+/- 0.048 S cm-1Visual Estimate
Rounded Reported
69 · S10.7 Electrical properties · Table S4
bulk pellet conductivity, Zone 2 particles0.227 +/- 0.052 S cm-1+/- 0.052 S cm-1Visual Estimate
Rounded Reported
69 · S10.7 Electrical properties · Table S4
bulk pellet conductivity, Zone 3 particles0.100 +/- 0.019 S cm-1+/- 0.019 S cm-1Visual Estimate
Rounded Reported
69 · S10.7 Electrical properties · Table S4