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首页> 外文期刊>The Journal of Chemical Physics >Thermally driven molecular linear motors: A molecular dynamics study
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Thermally driven molecular linear motors: A molecular dynamics study

机译:热驱动分子线性电动机:分子动力学研究

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摘要

We conduct molecular dynamics simulations of a molecular linear motor consisting of coaxial carbon nanotubes with a long outer carbon nanotube confining and guiding the motion of an inner short, capsulelike nanotube. The simulations indicate that the motion of the capsule can be controlled by thermophoretic forces induced by thermal gradients. The simulations find large terminal velocities of 100–400 nms for imposed thermal gradients in the range of 1–3 Km. Moreover, the results indicate that the thermophoretic force is velocity dependent and its magnitude decreases for increasing velocity.
机译:我们对由同轴碳纳米管组成的分子线性马达进行分子动力学模拟,该碳纳米管由长的外部碳纳米管限制并引导内部短的,胶囊状纳米管的运动。仿真表明,胶囊的运动可以由热梯度引起的热泳力控制。模拟发现,对于施加在1–3 K / nm范围内的热梯度,最终速度为100–400 nm / ns。而且,结果表明,热泳力与速度有关,并且其强度随着速度的增加而减小。

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