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Modulation of thermal conductivity in single-walled carbon nanotubes by fullerene encapsulation: enhancement or reduction?

机译:调制的导热系数富勒烯的单壁碳纳米管封装:增强或减少?

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Fullerene encapsulation has been proven to be a powerful approach to enhance the mechanical and electronic properties of single-walled carbon nanotubes (SWCNTs). However, some discrepancies emerge in recent studies of the fullerene encapsulation effect on the thermal conductivity of SWCNTs. More specifically, most previous theoretical studies predicted slight enhancement in the thermal conductivity, but the recent experiment by Kodama et al. (Nat. Mat.16, 892, 2017) observed a clear reduction in the thermal conductivity of SWCNTs by fullerene encapsulation. We perform molecular dynamics simulations to revisit this issue, by comparatively investigating the thermal conductivity of the SWCNT (n, n) and the corresponding peapod (n, n) with n = 8, 9, 10, and 11. We find that the encapsulation can reduce the thermal conductivity of narrower SWCNTs with n = 8 and 9, but it can slightly enhance the thermal conductivity of thicker SWCNTs with n = 10 and 11. The underlying mechanisms for these opposite effects are explored by analyzing the encapsulation induced structural deformation and the variation in the phonon dispersion of the SWCNT. We illustrate that the reduction effect observed in the recent experiment is related to the mechanism for reduction of the thermal conductivity for narrower SWCNTs here.
机译:富勒烯封装已经被证明是一个增强机械和强大的方法电子单壁碳的性质纳米管(SWCNTs)。出现在最近的富勒烯的研究封装对导热系数的影响SWCNTs。理论研究预测轻微的增强热导率,但是最近的实验通过形成et al。(Nat。Mat.16, 892年,2017)观察到一个明确的减少热电导率SWCNTs的富勒烯封装。模拟重新审视这个问题,比较研究的热电导率的SWCNT (n, n)和相应的豆荚(n, n)与n = 8, 9, 10,和11所示。窄SWCNTs的导热系数n = 8和9,但它可以略微提高导热系数的厚SWCNTs n =10和11所示。相反的影响被分析了引起的结构变形和封装变化的声子色散SWCNT。在最近的实验中有关减少热的机制电导率对窄SWCNTs这里。

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