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3ω method for specific heat and thermal conductivity measurements

Review of Scientific Instruments · 2001 · Vol. 72(7) · pp. 2996–3003
Lan LuWei YiDi Zhang

Abstract

We present a 3ω method for simultaneously measuring the specific heat and thermal conductivity of a rod- or filament-like specimen using a way similar to a four-probe resistance measurement. The specimen in this method needs to be electrically conductive and with a temperature-dependent resistance, for acting both as a heater to create a temperature fluctuation and as a sensor to measure its thermal response. With this method, we have successfully measured the specific heat and thermal conductivity of platinum wire specimens at cryogenic temperatures, and measured those thermal quantities of tiny carbon nanotube bundles some of which are only ∼10−9 g in mass.

Thermal properties of materialsCarbon Nanotubes in CompositesGraphene research and applicationsThermal conductivityMaterials scienceThermal resistanceComposite materialThermal conductivity measurementCarbon nanotubeThermalElectrical conductorThermal conductionProtein filament
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429
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2.10
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Cited by
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References
Thermal conductivity measurement from 30 to 750 K: the 3ω method
Review of Scientific Instruments · 1990 · 1,849 citations
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3ω method for specific heat and thermal conductivity measurements · Scinovex