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Structure, stability, and motion of dislocations in double-wall carbon nanotubes

机译:双壁碳纳米管中位错的结构,稳定性和运动

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摘要

In this paper,a novel double-wall carbon nanotube (DWCNT) with both edge and screw dislocations is studied by using the molecular dynamics (MD) method. The differences between two adjacent tubule indexes of armchair and zigzag nanotubes are determined to be 5 and 9,respectively,by taking into account the symmetry,integrality,and thermal stability of the composite structures. It is found that melting first occurs near the dislocations,and the melting temperatures of the dislocated armchair and zigzag DWCNTs are around 2600 K-2700 K.At the premelting temperatures,the shrink of the dislocation loop,which is comprised of edge and screw dislocations,implies that the composite dislocation in DWCNTs has self-healing ability.The dislocated DWCNTs first fracture at the edge dislocations,which induces the entire break in axial tensile test. The dislocated DWCNTs have a smaller fracture strength compared to the perfect DWCNTs.Our results not only match with the dislocation glide of carbon nanotubes (CNTs) in experiments,but also can free from the electron beam radiation under experimental conditions observed by the high resolution transmission electron microscope (HRTEM),which is deemed to cause the motion of dislocation loop.
机译:本文利用分子动力学(MD)方法研究了一种同时具有边缘位错和螺旋位错的新型双壁碳纳米管(DWCNT)。考虑到复合结构的对称性,完整性和热稳定性,扶手椅和之字形纳米管的两个相邻的微管指数之间的差异分别确定为5和9。结果表明,熔化首先发生在位错附近,位错的扶手椅形和锯齿形DWCNT的熔化温度约为2600 K-2700K。在预熔化温度下,位错环的收缩由边缘位错和螺旋位错组成。 ,表明DWCNTs中的复合位错具有自愈能力。位错的DWCNTs首先在边缘位错处断裂,从而在轴向拉伸试验中引起整个断裂。与理想的DWCNT相比,位错的DWCNT具有较小的断裂强度。我们的结果不仅与实验中的碳纳米管(CNT)的位错滑动相匹配,而且在高分辨率条件下观察到的实验条件下也可以摆脱电子束辐射电子显微镜(HRTEM),它被认为引起位错环的运动。

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  • 来源
    《中国物理:英文版》 |2012年第10期|327-334|共8页
  • 作者单位

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

    Laboratory for Quantum Engineering and Micro-Nano Energy Technology and Department of Physics, Xiangtan University, Xiangtan 411105, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
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