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Thermal Conductance of an Individual Single-Wall Carbon Nanotube above Room Temperature

Nano Letters · 2005 · Vol. 6(1) · pp. 96–100
Eric PopDavid J. MannQian WangKenneth E. GoodsonHongjie Dai

Abstract

The thermal properties of a suspended metallic single-wall carbon nanotube (SWNT) are extracted from its high-bias (I−V) electrical characteristics over the 300−800 K temperature range, achieved by Joule self-heating. The thermal conductance is approximately 2.4 nW/K, and the thermal conductivity is nearly 3500 Wm-1K-1 at room temperature for a SWNT of length 2.6 μm and diameter 1.7 nm. A subtle decrease in thermal conductivity steeper than 1/T is observed at the upper end of the temperature range, which is attributed to second-order three-phonon scattering between two acoustic modes and one optical mode. We discuss sources of uncertainty and propose a simple analytical model for the SWNT thermal conductivity including length and temperature dependence.

Carbon Nanotubes in CompositesThermal properties of materialsThermal Radiation and Cooling TechnologiesThermal conductivityCarbon nanotubeMaterials scienceAtmospheric temperature rangeJoule heatingPhononThermalConductanceScatteringThermal conduction
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References
<i>Electrons and Phonons</i>
Physics Today · 1961 · 3,378 citations
Nanoscale thermal transport
Journal of Applied Physics · 2003 · 3,097 citations
Untitled
Nanotechnology · 2001 · 418 citations
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