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Heat capacity of ZnO with cubic structure at high temperatures

机译:高温立方结构ZnO的热容

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The heat capacities at constant pressure and constant volume, and thermal expansivity are calculated for ZnO with rocksalt-type and zinc-blende-type cubic structures over a wide range of temperatures using molecular dynamics simulations with interactions due to effective pair-wise potentials which consist of the Coulomb, dispersion, and repulsion interaction. It is shown that the calculated structural and thermodynamic parameters including lattice constant, thermal-expansion coefficient, isothermal bulk modulus and its pressure derivative at ambient condition are in good agreement with the available experimental data and the latest theoretical results. At extended pressure and temperature ranges, lattice constant and heat capacity have also been predicted. The structural and thermodynamic properties of ZnO with cubic structure are summarized in the 300-1500 K temperature ranges and up to 100 kbar pressure. (c) 2006 Elsevier Ltd. All rights reserved.
机译:使用分子动力学模拟以及由于有效的成对电位作用而相互作用的分子动力学模拟,计算了在宽温度范围内具有岩盐型和闪锌矿型立方结构的ZnO在恒定压力和恒定体积下的热容和热膨胀系数。库仑,扩散和排斥相互作用的关系。结果表明,所计算的结构和热力学参数包括晶格常数,热膨胀系数,等温体积模量及其在环境条件下的压力导数与现有的实验数据和最新的理论结果吻合良好。在扩展的压力和温度范围内,晶格常数和热容量也已被预测。总结了在300-1500 K的温度范围和最高100 kbar的压力下具有立方结构的ZnO的结构和热力学性质。 (c)2006 Elsevier Ltd.保留所有权利。

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