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Thermal transport in silicene nanotubes: Effects of length, grain boundary and strain

机译:硅纳米管中的热传输:长度,晶界和应变的影响

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Thermal transport behavior in silicene nanotubes has become more important due to the application of these promising nanostructures in the engineering of next-generation nanoelectronic devices. We apply non-equilibrium molecular dynamics (NEMD) simulations to study the thermal conductivity of silicene nanotubes with different lengths and diameters. We further explore the effects of grain boundary, strain, vacancy defect, and temperature in the range of 300-700 K on the thermal conductivity. Our results indicate that the thermal conductivity varies with the length approximately in the range of 24-34 W/m K but exhibits insensitivity to the diameter and chirality. Besides, silicene nanotubes consisting of the grain boundary exhibit nearly 30% lower thermal conductivity compared with pristine ones. We discuss the underlying mechanism for the conductivity suppression of the system consisting of the grain boundary by calculating the phonon power spectral density. We find that by increasing the defect concentration and temperature, the thermal conductivity of the system decreases desirably. Moreover, for strained nanotubes, we observe unexpected changes in the thermal conductivity, so that the conductivity first increases significantly with tensile strain and then starts to decrease. The maximum thermal conductivity for the armchair and zigzag edge tubes appears at the strains about 3% and 5%, respectively, which is about 28% more than that of the unstrained structure. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于这些有前途的纳米结构在下一代纳米电子器件工程中的应用,硅纳米管中的热传输行为变得越来越重要。我们应用非平衡分子动力学(NEMD)模拟来研究具有不同长度和直径的硅纳米管的热导率。我们进一步探讨了晶界,应变,空位缺陷和温度在300-700 K范围内对导热率的影响。我们的结果表明,热导率随长度变化大约在24-34 W / m K的范围内,但对直径和手性不敏感。此外,与原始的相比,由晶界组成的硅纳米管的导热率降低了近30%。通过计算声子功率谱密度,我们讨论了抑制由晶界组成的系统的电导率的潜在机理。我们发现,通过增加缺陷浓度和温度,系统的热导率会降低。此外,对于应变纳米管,我们观察到了热导率的意外变化,因此电导率首先随着拉伸应变而显着增加,然后开始下降。扶手椅和之字形边缘管的最大热导率分别出现在约3%和5%的应变下,比未应变的结构高出约28%。 (C)2019 Elsevier Ltd.保留所有权利。

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