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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Thermal conductivity reduction in carbon nanotube by fullerene encapsulation: A molecular dynamics study
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Thermal conductivity reduction in carbon nanotube by fullerene encapsulation: A molecular dynamics study

机译:富勒烯封装碳纳米管的热导率降低:分子动力学研究

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Single-walled carbon nanotubes (SWCNTs) in their pristine form have high thermal conductivity whose further improvement has attracted a lot of interest. Some theoretical studies have suggested that the thermal conductivity of a (10, 10) SWCNT is dramatically enhanced by C-60 fullerene encapsulation. However, recent experiments on SWCNT bundles show that fullerene encapsulation leads to a reduction rather than an increase in thermal conductivity. Here, we employ three different molecular dynamics methods to study the influence of C-60 encapsulation on heat transport in a (10, 10) SWCNT. All the three methods consistently predict a reduction of the thermal conductivity of (10, 10) SWCNT upon C-60 encapsulation by 20% - 30%, in agreement with experimental results on bundles of SWCNTs. We demonstrate that there is a simulation artifact in the Green-Kubo method which gives anomalously large thermal conductivity from artificial convection. Our results show that the C-60 molecules conduct little heat compared to the outer SWCNT and reduce the phonon mean free paths of the SWCNT by inducing extra phonon scattering. We also find that the thermal conductivity of a (10, 10) SWCNT monotonically decreases with increasing filling ratio of C-60 molecules. (C) 2020 Elsevier Ltd. All rights reserved.
机译:其原始形式的单壁碳纳米管(SWCNTS)具有高导热率,其进一步改善引起了很多感兴趣。一些理论研究表明,通过C-60富勒烯封装显着增强了(10,10)SWCNT的导热率。然而,最近关于SWCNT束的实验表明,富勒烯封装导致减少而不是导热率的增加。在这里,我们采用了三种不同的分子动力学方法来研究C-60封装对(10,10)SWCNT中的热传输的影响。所有三种方法一致地预测(10,10)SWCNT在C-60包封后的导热率降低20%-30%,同时与SWCNT捆的实验结果一致。我们证明了从人工对流的绿色kBo方法中存在模拟伪影,其具有从人工对流的大致大导电性。我们的结果表明,与外部SWCNT相比,C-60分子的热量很小,并通过诱导额外的声子散射来减少SWCNT的自由路径。我们还发现(10,10)SWCNT的导热率随着C-60分子的填充率而单调地减小。 (c)2020 elestvier有限公司保留所有权利。

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