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Effective strain in helical rippled carbon nanotubes: A unifying concept for understanding electromechanical response

机译:螺旋波纹碳纳米管中的有效应变:理解机电响应的统一概念

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摘要

Despite its importance, little is known about how complex deformation modes alter the intrinsic electronic states of carbon nanotubes. Here we consider the rippling deformation mode characterized by helicoidal furrows and ridges and elucidate that a new intralayer strain effect rather than the known bilayer coupling and θ-π orbital mixing effects dominates its gapping. When an effective shear strain is used, it is possible to link both the electrical and the mechanical response of the complex rippled morphology to the known behavior of cylindrical tubes. In combination with objective molecular dynamics, this concept may be useful for understanding the electromechanical characteristics of large scale carbon nanotube assemblies and other individual nanoscale forms of carbon.
机译:尽管它很重要,但对于复杂的变形模式如何改变碳纳米管的固有电子状态知之甚少。在这里,我们考虑以螺旋沟和脊为特征的涟漪变形模式,并阐明了一种新的层内应变效应而不是已知的双层耦合和θ-π轨道混合效应主导了其间隙。当使用有效的剪切应变时,可以将复杂的波纹形态的电响应和机械响应都与圆柱管的已知行为联系起来。结合客观的分子动力学,该概念可能有助于理解大规模碳纳米管组件和其他单个纳米级形式的碳的机电特性。

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