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Carbon nanotube oscillator operated by thermal expansion of encapsulated gases

机译:碳纳米管振荡器通过封装气体的热膨胀运行

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摘要

We investigated a carbon nanotube (CNT) oscillator controlled by thermal gas expansion using classical molecular dynamics simulations. When the temperature rapidly increased, the force on the CNT oscillator induced by the thermal gas expansion rapidly increased and pushed out the CNT oscillator. As the CNT oscillator extruded from the outer nanotube, the suction force on the CNT oscillator increased by the excess van der Waals (vdW) energy. When the CNT oscillator reached the maximum extrusion point, the CNT oscillator was encapsulated into the outer nanotube by the suction force. Therefore, the CNT oscillator could be oscillated by both the gas expansion and the excess vdW interaction. As the temperature increased, the amplitude of the CNT oscillator increased. At high temperatures, the CNT oscillator escaped from the outer nanotube, because the force on the CNT oscillator due to the thermal gas expansion was higher than the suction force due to the excess vdW energy. By the appropriate temperature controls, such as the maximum temperature, the heating rate, and the cooling rate, the CNT oscillator could be operated.
机译:我们使用经典的分子动力学模拟研究了由热气体膨胀控制的碳纳米管(CNT)振荡器。当温度迅速升高时,由热气体膨胀引起的作用在CNT振荡器上的力迅速增加并推出CNT振荡器。随着CNT振荡器从外部纳米管中挤出,CNT振荡器上的吸力会因多余的范德华(vdW)能量而增加。当CNT振荡器达到最大挤出点时,CNT振荡器通过吸力被封装到外部纳米管中。因此,CNT振荡器可能会因气体膨胀和过量的vdW相互作用而振荡。随着温度的升高,CNT振荡器的振幅会增加。在高温下,CNT振荡器从外纳米管逸出,因为由于热气体膨胀而在CNT振荡器上产生的力高于由于过量vdW能量引起的吸力。通过适当的温度控制(例如最高温度,加热速率和冷却速率),可以运行CNT振荡器。

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