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碳纳米管中壁间相互作用的建模:基础与器件应用

Modelling interwall interactions in carbon nanotubes: fundamentals and device applications.

作者信息

Bichoutskaia Elena

机构信息

School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2007 Dec 15;365(1861):2893-906. doi: 10.1098/rsta.2007.0017.

Abstract

Carbon nanotubes are the most commonly used 'building blocks' of modern nanotechnology. Their unique mechanical and electronic properties, stability and functionality show great promise in creating functional devices on the nanometre scale. One of the great challenges in using this scale is the ability of physical manipulation of the components, such as their positioning and assembling. Strong correlation between the structure and mechanical interactions of the walls of carbon nanotubes provides self-regulation of their relative motion. This can be further exploited in low-friction and high-stiffness devices. In this paper, we present a condensed overview of the recent progress in fundamental understanding of nanomechanical and nanoelectromechanical behaviour of carbon nanotubes and their applications in nanodevices.

摘要

碳纳米管是现代纳米技术中最常用的“构建单元”。它们独特的机械和电子特性、稳定性及功能性在创建纳米级功能器件方面展现出巨大潜力。使用这种尺度面临的重大挑战之一是对组件进行物理操控的能力,比如它们的定位和组装。碳纳米管壁的结构与机械相互作用之间的强相关性为其相对运动提供了自我调节。这可在低摩擦和高刚度器件中得到进一步利用。在本文中,我们简要概述了碳纳米管纳米力学和纳米机电行为的基本理解方面的最新进展及其在纳米器件中的应用。

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