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Nanotechnology · 2001 · Vol. 12(1) · pp. 21–24
M.A. OsmanDeepak Srivastava

Abstract

The thermal conductivity of several single-wall carbon nanotubes has been calculated over a temperature range of 100-500 K using molecular dynamics simulations with the Tersoff-Brenner potential for C-C interactions. In all cases, starting from similar values at 100 K, the thermal conductivities show a peaking behaviour before falling off at higher temperatures. The peak position shifts to higher temperatures for nanotubes with larger diameters and no significant dependence on the tube chirality is observed. It is shown that this phenomenon is due to the onset of Umklapp scattering, which shifts to higher temperatures for nanotubes with larger diameters.

Carbon Nanotubes in CompositesThermal properties of materialsGraphene research and applicationsMaterials scienceCarbon nanotubeThermal conductivityMolecular dynamicsChirality (physics)ThermalAtmospheric temperature rangeRange (aeronautics)ScatteringCondensed matter physics

Funding

  • University of Kentucky
  • China Scholarship Council
  • Division of Chemistry
  • Division of Undergraduate Education
Citations
418
FWCI
8.39
field-weighted impact
References
19
Percentile
99%
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Citations per year
References
Helical microtubules of graphitic carbon
Nature · 1991 · 42,584 citations
Single-shell carbon nanotubes of 1-nm diameter
Nature · 1993 · 8,859 citations
Thermal conductivity of carbon nanotubes
Nanotechnology · 2000 · 1,124 citations
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