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首页> 外文期刊>International Journal of Heat and Mass Transfer >Effect of grain boundary angle on the thermal conductivity of nanostructured bicrystal ZnO based on the molecular dynamics simulation method
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Effect of grain boundary angle on the thermal conductivity of nanostructured bicrystal ZnO based on the molecular dynamics simulation method

机译:基于分子动力学模拟方法的晶界角对纳米结构双晶ZnO导热系数的影响

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摘要

ZnO is a widely used semiconductor material due to its excellent physical and mechanical properties. The thermal transport behavior across a single grain boundary (GB) of bicrystal ZnO with varying tilt angles from 5.45 degrees to 67.38 degrees was investigated using a nonequilibrium molecular dynamics simulation. The GB energy and Kapitza resistance as a function of tilt angle were determined and parameters of the extended Read-Shockley model were calculated. The Kapitza resistance varied monotonically with a GB angle <36 degrees and was nearly constant when the angle was >36 degrees. Furthermore, effective thermal conductivity and Kapitza resistance were found to depend strongly on the sample length and temperature. Finally, we compared the phonon density of states of the two types of GBs and found a mismatch in the low frequency that might 'explain the effect of the GBs structures on heat conduction. (C) 2019 Elsevier Ltd. All rights reserved.
机译:ZnO由于其优异的物理和机械性能而被广泛使用的半导体材料。使用非平衡分子动力学模拟研究了倾斜角从5.45度到67.38度变化的双晶ZnO单晶界(GB)上的热传输行为。确定了GB能量和Kapitza电阻随倾斜角的变化,并计算了扩展Read-Shockley模型的参数。 Kapitza电阻随GB角<36度单调变化,而当角度大于36度时几乎恒定。此外,发现有效的热导率和Kapitza电阻在很大程度上取决于样品的长度和温度。最后,我们比较了两种类型GB的状态的声子密度,发现低频失配可能“解释了GBs结构对热传导的影响”。 (C)2019 Elsevier Ltd.保留所有权利。

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