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Negative Thermophoresis in Concentric Carbon Nanotube Nanodevices

机译:同心碳纳米管纳米器件中的负热泳。

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Positive and negative thermophoresis in fluids has found widespread applications from mass transport to molecule manipulation. In solids, although positive thermophoresis has been recently discovered in both theoretical and experimental studies, negative thermophoresis has never been reported. Here we reveal via molecular dynamics simulations that negative thermophoresis does exist in solids. We consider the motion of a single walled carbon nanotube nested inside of two separate outer tubes held at different temperatures. It is found that a sufficiently long inner tube will undergo negative thermophoresis, whereas positive thermophoresis is favorable for a relatively short inner tube. Mechanisms for the observed positive thermophoresis and negative thermophoresis are shown, to be totally different. In positive thermophoresis, the driving force comes mainly from the thermally induced edge force and the interlayer attraction force, whereas the driving force for negative thermophoresis is mainly due to the thermal gradient force. These findings have enriched-our knowledge of the fundamental. driving mechanisms for thermophoresis in, solids and May stimulate its further applications in nanotechnology.
机译:流体中的正负热泳已发现从质量传输到分子操纵的广泛应用。在固体中,尽管最近在理论和实验研究中都发现了正热泳,但从未报道过负热泳。在这里,我们通过分子动力学模拟揭示了固体中确实存在负热泳。我们考虑了一个单壁碳纳米管的运动,该碳纳米管嵌套在两个不同温度的独立外管内。发现足够长的内管将经历负热泳,而正热泳对于相对短的内管是有利的。显示了观察到的正向热泳和负向热泳的机理完全不同。在正向热泳中,驱动力主要来自热感应边缘力和层间吸引力,而负向热泳的驱动力主要来自热梯度力。这些发现丰富了我们对基础知识的了解。固体中热泳的驱动机制可能刺激其在纳米技术中的进一步应用。

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