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Thermal conductivity of carbon nanotubes

Nanotechnology · 2000 · Vol. 11(2) · pp. 65–69
Jianwei CheTahir ÇağınWilliam A. Goddard

Abstract

As the sizes of electronic and mechanical devices are decreased to the micron and nanometre level, it becomes particularly important to predict the thermal transport properties of the components. Using molecular level theories, such predictions are particularly important for modelling nano-electronic devices where scaling laws may change substantially but it is most difficult to accurately measure the properties. Hence, using the empirical bond order dependent force field, we have studied here the thermal conductivity of nanotubes' dependence on structure, defects and vacancies. The anisotropic character of the thermal conductivity of the graphite crystal is naturally reflected in the carbon nanotubes. We found that the carbon nanotubes have very high thermal conductivity comparable to diamond crystal and in-plane graphite sheet. In addition, nanotube bundles show very similar properties as graphite crystal in which dramatic difference in thermal conductivities along different crystal axis.

Carbon Nanotubes in CompositesGraphene research and applicationsThermal properties of materialsMaterials scienceCarbon nanotubeThermal conductivityGraphiteDiamondCrystal (programming language)AnisotropyNanotechnologyThermalComposite material

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Multidisciplinary University Research Initiative
  • Office of Naval Research
  • Division of Chemistry
  • Army Research Office
Citations
1,124
FWCI
5.69
field-weighted impact
References
9
Percentile
97%
vs. same field & year
Citations per year
Cited by
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References
Helical microtubules of graphitic carbon
Nature · 1991 · 42,584 citations
Single-shell carbon nanotubes of 1-nm diameter
Nature · 1993 · 8,859 citations
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