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Unidirectional ripples in strained graphene nanoribbons with clamped edges at zero and finite temperatures

机译:零温度和有限温度下具有夹紧边缘的应变石墨烯纳米带中的单向波纹

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摘要

Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigate the formation of unidirectional ripples in zigzag and armchair graphene nanoribbons with clamped edges under in-plane uniform strain. The ripple formation is found to be a result of buckling under in-plane membrane forces having compressive and tensile principle components. This study demonstrates that the amplitude and orientation of the unidirectional ripples can be controlled by a change in the components of the applied strain. The ripple wavelength is practically independent of the applied strain but increases with the increasing nanoribbon width. In the study of the temperature effect on strain-induced ripples it was found that with increase in temperature the degree of fluctuation of ripples increases. Ripples with larger formation energy are less affected by thermal fluctuations.
机译:进行了基于多体原子间电势的分子动力学模拟,以研究在平面内均匀应变下锯齿形和扶手椅状石墨烯纳米带夹边的单向波纹的形成。发现波纹的形成是在具有压缩和拉伸原理分量的面内膜力作用下屈曲的结果。这项研究表明,单向波纹的幅度和方向可以通过改变所施加应变的分量来控制。纹波波长实际上与所施加的应变无关,但是随着纳米带宽度的增加而增加。在研究温度对应变引起的波纹的影响时,发现随着温度的升高,波纹的波动程度也会增加。具有较大地层能量的波纹受热波动的影响较小。

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  • 来源
    《Physical review》 |2012年第3期|p.035427.1-035427.8|共8页
  • 作者单位

    Institute for Metals Superplasticity Problems, Russian Academy of Science, Khalturin Street 39, Ufa 450001, Russia;

    Institute for Metals Superplasticity Problems, Russian Academy of Science, Khalturin Street 39, Ufa 450001, Russia;

    School of Mechanical and Aerospace Engineering, Nanvang Technological University, 50 Nanvang Avenue, Singapore 639798;

    Semenov Institute of Chemical Physics, Russian Academy of Sciences, Kosygin Street 4, Moscow 119991, Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solitons; phonons in crystal lattices;

    机译:孤子晶格中的声子;

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