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首页> 外文期刊>International Journal of Thermal Sciences >Heat conduction in coaxial nanocables of Au nanowire core and carbon nanotube shell: A molecular dynamics simulation
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Heat conduction in coaxial nanocables of Au nanowire core and carbon nanotube shell: A molecular dynamics simulation

机译:金纳米线核和碳纳米管壳同轴纳米电缆中的热传导:分子动力学模拟

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摘要

Non-equilibrium molecular dynamics simulations have been employed to calculate the thermal conductivity of coaxial nanocables of Au nanowire core and carbon nanotube shell, i.e. nanotubes filled with nanowires. Our efforts are focused on how the thermal conductivity can be altered in nanocables. By performing analysis on the phonon vibrational density of states, we have revealed that the thermal conductivity of nanocables is 20-42% higher than the corresponding bare nanotubes, due to the interactions of C-C and C-Au and the mass transfer induced by nanowire axial motion. The dependences of thermal conductivity on the temperature, length, diameter, chirality and filling ratio have been investigated. It turns out that the tendencies of nanocable thermal conductivity changing with temperature, length and diameter are similar to bare nanotubes. In addition, the thermal conductivity of nanocables always goes up with the increasing filling ratio. For different chirality types, the zigzag (18, 0) nanocable has the largest thermal conductivity increments, followed by armchair (10, 10) and chiral (14, 7) nanocables. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:已经使用非平衡分子动力学模拟来计算Au纳米线核心和碳纳米管壳,即充满纳米线的纳米管的同轴纳米电缆的导热率。我们的工作集中在如何改变纳米电缆的热导率上。通过对声子的振动密度进行分析,我们发现由于CC和C-Au的相互作用以及纳米线轴向诱导的质量转移,纳米电缆的热导率比相应的裸纳米管高20-42%。运动。研究了导热系数对温度,长度,直径,手性和填充率的依赖性。事实证明,纳米电缆热导率随温度,长度和直径的变化趋势类似于裸露的纳米管。另外,纳米电缆的热导率总是随着填充率的增加而增加。对于不同的手性类型,之字形(18,0)纳米电缆具有最大的热导率增量,其次是扶手椅(10,10)和手性(14,7)纳米电缆。 (C)2015 Elsevier Masson SAS。版权所有。

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