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Original Articles

Atomistic Simulations of Uniaxial Tensile Behaviors of Single-walled Carbon Nanotubes

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Pages 543-547 | Received 01 Mar 2004, Accepted 01 Apr 2004, Published online: 31 Jan 2007

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J. W. Kang & H. J. Hwang. (2005) An ultrathin carbon nanoribbon study as a component of nanoelectromechanical devices. Molecular Simulation 31:8, pages 561-565.
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Articles from other publishers (11)

Wen-Jay Lee, Jee-Gong Chang, An-Cheng Yang, Yeng-Tseng Wang, Wan-Sheng Su, Cai-Zhuang Wang & Kai-Ming Ho. (2013) Influence of oriented topological defects on the mechanical properties of carbon nanotube heterojunctions. Journal of Applied Physics 114:14.
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Wen-Jay Lee & Wan-Sheng Su. (2013) Investigation into the mechanical properties of single-walled carbon nanotube heterojunctions. Physical Chemistry Chemical Physics 15:27, pages 11579.
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Shin-Pon Ju, Meng-Hsiung Weng & Wen-Shian Wu. (2010) MD investigation of the collective carbon atom behavior of a (17, 0) zigzag single wall carbon nanotube under axial tensile strain. Journal of Nanoparticle Research 12:8, pages 2979-2987.
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Meng-Hsiung Weng, Shin-Pon Ju & Wen-Shian Wu. (2009) The collective motion of carbon atoms in a (10,10) single wall carbon nanotube under axial tensile strain. Journal of Applied Physics 106:6.
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Jenn-Sen Lin, Shin-Pon Ju, Shih-Wen Yung, Wen-Shian Wu, Meng-Hsiung Weng & Wen-Jay Lee. (2009) Mechanical and dynamical behavior of carbon nanotube with defects:A molecular dynamics simulation. Mechanical and dynamical behavior of carbon nanotube with defects:A molecular dynamics simulation.
Shin-Pon JU, Meng-Hsiung WENG, Jenn-Sen LIN, Jian-Ming LU, Jee-Gong CHANG & Wen-Hsien WU. (2008) Mechanical Behavior of Single-Walled Carbon Nanotubes in Water under Tensile Loadings: A Molecular Dynamics Study. Chinese Journal of Catalysis 29:11, pages 1113-1116.
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H.W. Zhang, K. Cai & L. Wang. (2008) Deformation of single-walled carbon nanotubes under large axial strains. Materials Letters 62:24, pages 3940-3943.
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Y. Y. Zhang, C. M. Wang & V. B. C. Tan. (2008) Examining the effects of wall numbers on buckling behavior and mechanical properties of multiwalled carbon nanotubes via molecular dynamics simulations. Journal of Applied Physics 103:5.
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SeongJun Heo & Susan B. Sinnott. (2007) Effect of molecular interactions on carbon nanotube friction. Journal of Applied Physics 102:6, pages 064307.
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Y.Y. Zhang, V.B.C. Tan & C.M. Wang. (2007) Effect of strain rate on the buckling behavior of single- and double-walled carbon nanotubes. Carbon 45:3, pages 514-523.
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Kevin Van Workum, Guangtu Gao, J. David Schall & Judith A. Harrison. (2006) Expressions for the stress and elasticity tensors for angle-dependent potentials. The Journal of Chemical Physics 125:14.
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