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单壁碳纳米管在独立装置中对扭转变形的机电响应。

Electromechanical response of single-walled carbon nanotubes to torsional strain in a self-contained device.

作者信息

Hall Adam R, Falvo Michael R, Superfine Richard, Washburn Sean

机构信息

Curriculum in Applied and Materials Sciences, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.

出版信息

Nat Nanotechnol. 2007 Jul;2(7):413-6. doi: 10.1038/nnano.2007.179. Epub 2007 Jun 24.

Abstract

Nanoscale electronics seeks to decrease the critical dimension of devices in order to improve performance while reducing power consumption. Single-walled carbon nanotubes fit well with this strategy because, in addition to their molecular size, they demonstrate a number of unique electronic, mechanical and electromechanical properties. In particular, theory predicts that strain can have a large effect on the band structure of a nanotube, which, in turn, has an influence on its electron transport properties. This has been demonstrated in experiments where axial strain was applied by a scanning probe. Theory also predicts that torsional strain can influence transport properties, which was observed recently in multiwalled nanotubes. Here we present the first experimental evidence of an electromechanical effect from torsional strain in single-walled nanotubes, and also the first measurements of piezoresistive response in a self-contained nanotube-based nanoelectromechanical structure.

摘要

纳米级电子学旨在减小器件的关键尺寸,以提高性能并降低功耗。单壁碳纳米管非常适合这一策略,因为除了其分子尺寸外,它们还展现出许多独特的电子、机械和机电特性。特别是,理论预测应变会对纳米管的能带结构产生很大影响,进而影响其电子传输特性。这一点已在通过扫描探针施加轴向应变的实验中得到证实。理论还预测扭转应变会影响传输特性,这一点最近在多壁纳米管中已被观察到。在此,我们展示了单壁纳米管中扭转应变产生机电效应的首个实验证据,以及基于自包含纳米管的纳米机电结构中压阻响应的首次测量结果。

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