Article ID Journal Published Year Pages File Type
1593243 Solid State Communications 2011 5 Pages PDF
Abstract

The influence of vacancy defects and nitrogen doping on the thermal conductivity of typical armchair (10, 10) single-walled carbon nanotubes is investigated using molecular dynamics (MD) simulation. The second-generation reactive empirical bond order potential and Tersoff potential are used to describe the interatomic interactions and the thermal conductivities are calculated using the Müller-Plathe approach (also called non-equilibrium MD simulation). Vacancy defects decrease the thermal conductivity whereas the substitution of nitrogen at vacancy sites improves the thermal conductivity. Quantum correction of the calculated results produces a thermal conductance temperature dependence that is in qualitative agreement with experimental data.

► Vacancy defects decrease the thermal conductivity. ► The substitution of nitrogen at vacancy sites improves the thermal conductivity. ► Thermal conductivity of CNTs with vacancy defects should be treated circumspectly. ► Quantum effects influence the thermal conductance at lower temperatures.

Related Topics
Physical Sciences and Engineering Materials Science Materials Science (General)
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