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The thermal conductivity and thermal rectification of carbon nanotubes studied using reverse non-equilibrium molecular dynamics simulations

机译:用反向非平衡分子动力学模拟研究碳纳米管的热导率和热精馏

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摘要

The thermal conductivity of single-walled and multi-walled carbon nanotubes has been investigated as a function of the tube length L, temperature and chiral index using non-equilibrium molecular dynamics simulations. In the ballistic-diffusive regime the thermal conductivity follows a La law. The exponent a is insensitive to the diameter of the carbon nanotube; α≈0.77 has been derived for short carbon nanotubes at room temperature. The temperature dependence of the thermal conductivity shows a peak before falling at higher temperatures (>500 K). The phenomenon of thermal rectification in nanotubes has been investigated by gradually Changing the atomic mass in the tube-axial direction as well as by loading extra masses on the terminal sites of the tube. A higher thermal conductivity occurs when heat flows from the low-mass to the high-mass region.
机译:已使用非平衡分子动力学模拟研究了单壁和多壁碳纳米管的导热系数与管长L,温度和手性指数的关系。在弹道扩散状态下,热导率遵循拉定律。指数a对碳纳米管的直径不敏感。对于室温下的短碳纳米管,α≈0.77。热导率的温度依赖性在较高温度(> 500 K)下降之前显示一个峰值。已经通过逐渐改变管轴向上的原子质量以及通过在管的末端位置加载额外的质量来研究纳米管中的热整流现象。当热量从低质量区域流向高质量区域时,会出现更高的导热率。

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