首页> 外文会议>Meeting of the Electrochemical Society >THE MECHANICAL, THERMAL AND ELECTRONIC PROPERTIES OF NANOSCALE MATERIALS BY STATISTICAL MOMENT AND MOLECULAR DYNAMICS METHODS
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THE MECHANICAL, THERMAL AND ELECTRONIC PROPERTIES OF NANOSCALE MATERIALS BY STATISTICAL MOMENT AND MOLECULAR DYNAMICS METHODS

机译:纳米级材料通过统计时刻和分子动力学方法的机械,热和电子性质

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The mechanical, thermal and electronic properties of the nanoscale materials are studied using an ab initio molecular dynamics (TBMD) method and statistical moment method. We investigate the strength and fracture behaviors of nanoscale materials like carbon nanotubes (CNT), graphens and nanowires in comparison with those of corresponding bulk materials. The thermal lattice expansion coefficients, linear elastic parameters, nonlinear elastic instabilities and bucking, inelastic relaxation, yield strength and fracture behaviors are studied in detail, including the anharmonicity of thermal lattice vibrations. We will show that the thermodynamic and strength properties of the nanoscale materials are quite different from those of the corresponding bulk materials. The electronic density of states and electronic transports of the nanoscale materials, with and without the atomistic defects are also discussed.
机译:使用AB Initio分子动力学(TBMD)方法和统计矩法研究了纳米级材料的机械,热和电子性质。我们研究了纳米管(CNT),图形和纳米线等纳米级材料的强度和断裂行为与相应的散装材料相比。详细研究了热晶格膨胀系数,线性弹性参数,非线性弹性不耐动装置,非线性松弛,屈服强度和断裂行为,包括热晶格振动的anharmonicity。我们将表明,纳米级材料的热力学和强度性质与相应的散装材料的热力学和强度性质完全不同。还讨论了纳米级材料的状态和电子传输的电子密度,有和没有原子缺陷。

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