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Melting Behaviour of Shell-symmetric Aluminum Nanoparticles: Molecular Dynamics Simulation
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作者 李昆杰 黄世萍 +2 位作者 涂伟霞 朱吉钦 刘辉 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2009年第3期215-222,339,共9页
Molecular dynamics simulations with embedded atom method potential were carried out for A1 nanoparticles of 561 atoms in three structures: icosahedron, decahedron, and truncated octahedron. The total potential energy... Molecular dynamics simulations with embedded atom method potential were carried out for A1 nanoparticles of 561 atoms in three structures: icosahedron, decahedron, and truncated octahedron. The total potential energy and specific heat capacity were calculated to estimate the melting temperatures. The melting point is 540+10 K for the icosahedral structure, 500±10 K for the decahedral structure, and 520±10 K for the truncated octahedral structure. With the results of mean square displacement, the bond order parameters and radius of gyration are consistent with the variation of total potential energy and specific heat capacity. The relaxation time and stretching parameters in the Kohlraush-William-Watts relaxation law were obtained by fitting the mean square displacement. The results show that the relationship between the relaxation time and the temperatures is in agreement with standard Arrhenius relation in the high temperature range. 展开更多
关键词 Al nanoparticle shell-symmetric structure Molecular dynamics simulation
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