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Influence of Intertube Additional Atoms on Sliding Behaviors of Double-Walled Carbon Nanotube

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【作者】 宋海洋耿淑芳查新未孙建

【Author】 SONG Hai-Yang, GENG Shu-Fang,ZHA Xin-Wei,and SUN Jian School of Science,Xi’an University of Posts and Telecommunications,Xi’an 710121,China

【机构】 School of Science,Xi’an University of Posts and Telecommunications

【摘要】 The effects of intertube additional atoms on the sliding behaviors of double-walled carbon nanotubes(DWCNTs) are investigated using molecular dynamics(MD) simulation method.The interaction between carbon atoms is modeled using the second-generation reactive empirical bond-order potential coupled with the Lennard-Jones potential.The simulations indicate that intertube additional atoms of DWCNT can significantly enhance the load transfer between neighboring tubes of DWCNT.The improvement in load transfer is guaranteed by the addition of intertube atoms which are covalently bonded to the inner and outer tubes of DWCNT.The results also show that the sliding behaviors of DWCNT are strongly dependent of additional atom numbers.The results presented here demonstrate that the superior mechanical properties of DWCNT can be realized by controlling intertube coupling.The general conclusions derived from this work may be of importance in devising high-performance CNT composites.

【Abstract】 The effects of intertube additional atoms on the sliding behaviors of double-walled carbon nanotubes(DWCNTs) are investigated using molecular dynamics(MD) simulation method.The interaction between carbon atoms is modeled using the second-generation reactive empirical bond-order potential coupled with the Lennard-Jones potential.The simulations indicate that intertube additional atoms of DWCNT can significantly enhance the load transfer between neighboring tubes of DWCNT.The improvement in load transfer is guaranteed by the addition of intertube atoms which are covalently bonded to the inner and outer tubes of DWCNT.The results also show that the sliding behaviors of DWCNT are strongly dependent of additional atom numbers.The results presented here demonstrate that the superior mechanical properties of DWCNT can be realized by controlling intertube coupling.The general conclusions derived from this work may be of importance in devising high-performance CNT composites.

【基金】 Supported by the National Natural Science Foundation of China under Grant No.10902083;the Program for New Scientific and Technological Star of Shaanxi Province under Grant No.2012KJXX-39
  • 【文献出处】 Communications in Theoretical Physics ,理论物理通讯(英文版) , 编辑部邮箱 ,2012年09期
  • 【分类号】TB383.1
  • 【被引频次】1
  • 【下载频次】23
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