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热振动诱导碰撞驱动金刚石针作用于三壁碳纳米管旋转。

Diamond Needles Actuating Triple-Walled Carbon Nanotube to Rotate via Thermal Vibration-Induced Collision.

机构信息

School of Highway, Chang'an University, Xi'an 710064, China.

College of Water Resources and Architecturally Engineering, Northwest A&F University, Yangling 712100, China.

出版信息

Int J Mol Sci. 2019 Mar 6;20(5):1140. doi: 10.3390/ijms20051140.

Abstract

A rotary nanomotor is an essential component of a nanomachine. In the present study, a rotary nanomotor from wedged diamonds and triple-walled nanotubes was proposed with the consideration of boundary effect. The outer tubes and mid-tubes were used as nanobearing to constrain the inner tube. Several wedges of the diamond were placed near the inner tube for driving the inner tube to rotate. At a temperature lower than 300 K, the inner tube as the rotor had a stable rotational frequency (SRF). It is shown that both the rotational direction and the value of SRF of the rotor depended on the temperature and thickness of the diamond wedges. The dependence was investigated via theoretical analysis of the molecular dynamics simulation results. For example, when each diamond wedge had one pair of tip atoms (unsaturated), the rotational direction of the rotor at 100 K was opposite to that at 300 K. At 500 K, the rotating rotor may stop suddenly due to breakage of the diamond needles. Some conclusions are drawn for potential application of such a nanomotor in a nanomachine.

摘要

旋转纳米马达是纳米机器的重要组成部分。在本研究中,考虑到边界效应,提出了一种由楔形金刚石和三壁纳米管组成的旋转纳米马达。外管和中管用作纳米轴承,以限制内管。几个金刚石楔形物放置在内管附近,以驱动内管旋转。在低于 300 K 的温度下,作为转子的内管具有稳定的旋转频率(SRF)。结果表明,转子的旋转方向和 SRF 的值都取决于金刚石楔形物的温度和厚度。通过对分子动力学模拟结果的理论分析研究了这种依赖性。例如,当每个金刚石楔形物有一对尖端原子(不饱和)时,转子在 100 K 下的旋转方向与 300 K 下的旋转方向相反。在 500 K 下,由于金刚石针的断裂,旋转的转子可能会突然停止。为这种纳米马达在纳米机器中的潜在应用得出了一些结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ef0/6429505/c21a3d0ebb62/ijms-20-01140-g001.jpg

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