Thermoelectric — Bromine Vapor Induced Continuous p- to n-Type Conversion of a Semiconductive Metal-Organic Framework Cu[Cu(pdt)2]

Measurement evidence

Thermoelectric

Bromine Vapor Induced Continuous p- to n-Type Conversion of a Semiconductive Metal-Organic Framework Cu[Cu(pdt)2] · Gupta S., Tanaka H., Sato T. et al. · Inorganic Chemistry · 2022 · 4414-4420

1 measurement group · 6 results

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

Thermoelectromotive-force measurement on pressed pellets

Brx@Cu[Cu(pdt)2] bromine-doped series · Powder

Home-built apparatus with Peltier heating/cooling, Al blocks, T-type thermocouples, Agilent 34420A nanovolt/microohm meter; S = -DeltaV/DeltaT.

Temperature
ambient temperature
Atmosphere
ambient
Geometry
pressed pellet bridging aluminium blocks; copper/constantan thermocouples fixed by carbon paste
Context
pristine and Br-doped pellets
Measurement source
S7-S8 · Experimental details of thermoelectromotive force measurement · Figure S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Bromine fraction at p-to-n Seebeck sign boundarysign changed at x = 0.5; negative when x > 0.5Text
Rounded Reported
5 · Thermoelectric Properties · Figure 6b
Seebeck coefficient x = 0+337 uV K-1Text
Exact Reported
4 · Thermoelectric Properties · Figure 6
Seebeck coefficient x = 0.10~190 uV K-1 from Figure 6bFigure Axis
Approximate
5 · Thermoelectric Properties · Figure 6b
Seebeck coefficient x = 0.44~5 uV K-1 from Figure 6bFigure Axis
Approximate
5 · Thermoelectric Properties · Figure 6b
Seebeck coefficient x = 0.62~-25 uV K-1 from Figure 6bFigure Axis
Approximate
5 · Thermoelectric Properties · Figure 6b
Seebeck coefficient x = 0.94~-105 uV K-1 from Figure 6bFigure Axis
Approximate
5 · Thermoelectric Properties · Figure 6b