Carbon molecules oscillating in carbon nanotube bundles

N. Thamwattana, B. Cox, J.M. Hill
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引用次数: 6

Abstract

Fullerenes C60 and carbon nanotubes are of considerable interest to researchers from many scientific areas due to their unique electronic and mechanical properties. One application of these carbon nanostructures that has recently attracted much attention is the creation of an oscillator that operates in the gigahertz range frequency. A number of studies have found that the sliding of the inner-shell inside the outer-shell of a multi-walled carbon nanotube can generate gigahertz oscillatory frequencies. In this paper, we investigate the mechanics of a gigahertz oscillator comprising a carbon nanotube oscillating within the centre of a uniform concentric ring or bundle of carbon nanotubes. Since much higher frequencies can be generated from a C60 fullerene oscillating inside a nanotube, we also consider the case of a C60 fullerene oscillating within a bundle of carbon nanotubes. Using the Lennard-Jones potential and the continuum approach, we obtain a relation between the bundle radius and the radii of the nanotubes forming the bundle, as well as the optimum bundle size which gives rise to the maximum oscillatory frequency for both the C60 and the nanotube bundle oscillators. While previous studies in this area have been undertaken through molecular dynamics simulations, this paper emphasizes the use of applied mathematical modelling techniques which provides considerable insight into the underlying mechanisms. The paper presents a synopsis of the major results derived in detail by the present authors in [1, 2].
碳分子在碳纳米管束中振荡
富勒烯C60和碳纳米管由于其独特的电子和机械性能而引起了许多科学领域的研究人员的极大兴趣。这些碳纳米结构的一个应用最近引起了人们的广泛关注,那就是制造一种工作在千兆赫频率范围内的振荡器。许多研究发现,多壁碳纳米管的内壳在外层的滑动可以产生千兆赫兹的振荡频率。在本文中,我们研究了一个由碳纳米管组成的千兆赫振荡器的力学,该振荡器在一个均匀的同心环或碳纳米管束的中心振荡。由于C60富勒烯在纳米管内振荡可以产生更高的频率,我们也考虑了C60富勒烯在碳纳米管束内振荡的情况。利用Lennard-Jones势和连续介质方法,我们得到了束半径与形成束的纳米管半径之间的关系,以及使C60和纳米管束振荡器的最大振荡频率产生的最佳束尺寸。虽然以前在这一领域的研究是通过分子动力学模拟进行的,但本文强调了应用数学建模技术的使用,该技术提供了对潜在机制的相当深入的了解。本文简要介绍了本文作者在[1,2]中详细推导的主要结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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