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首页> 外文期刊>Nanotechnology >Thermal rectification in mass-graded nanotubes: a model approach in the framework of reverse non-equilibrium molecular dynamics simulations
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Thermal rectification in mass-graded nanotubes: a model approach in the framework of reverse non-equilibrium molecular dynamics simulations

机译:质量分级纳米管中的热精馏:反向非平衡分子动力学模拟框架中的模型方法

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摘要

The thermal rectification in nanotubes with a mass gradient is studied by reverse non-equilibrium molecular dynamics simulations. We predict a preferred heat flow from light to heavy atoms which differs from the preferential direction in one-dimensional monoatomic systems. This behavior of nanotubes is explained by anharmonicities caused by transverse motions which are stronger at the low-mass end. The present simulations show an enhanced rectification with increasing tube length, diameter and mass gradient. Implications of the present findings for applied topics are mentioned concisely.
机译:通过反向非平衡分子动力学模拟研究了具有质量梯度的纳米管中的热精馏。我们预测从轻原子到重原子的优选热流与一维单原子系统中的优先方向不同。纳米管的这种行为是由横向运动引起的非谐性解释的,横向运动在低质量端更强。本模拟显示出随着管长,直径和质量梯度的增加,整流效果得到了增强。简要提及了本研究结果对应用主题的影响。

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