First-Principles Calculations of the Structural, Mechanical and Thermodynamics Properties of Cubic Zirconia

Ibrahim Dauda Muhammad, M. Awang, O. Mamat, Zilati Bt Shaari
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引用次数: 15

Abstract

The structural, mechanical and thermodynamics properties of cubic zirconium oxide (cZrO2) were investigated in this study using ab initio or first-principles calculations. Density functional theory was used to optimize the crystal structure of cZrO2 and thereafter, simulations were conducted to predict the lattice parameters and elastic constants. The Zr-O bond distance was calculated as 2.1763 Å with unit cell density of 6.4179 g/cm3. The data obtained were used to determine Young’s modulus, bulk modulus, Poisson’s ratio and hardness of cZrO2 as 545.12 GPa, 136.464 GPa, 0.1898 and 12.663(Hv) respectively. The result indicates that cZrO2 is mechanically stable with thermodynamics properties of a refractory material having potential for structural and catalytic applications in various forms as a nanomaterial.
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立方氧化锆结构、力学和热力学性质的第一性原理计算
本文采用从头计算和第一性原理计算的方法研究了立方氧化锆(cZrO2)的结构、力学和热力学性质。利用密度泛函理论优化了cZrO2的晶体结构,并通过模拟预测了晶格参数和弹性常数。计算得到Zr-O键距为2.1763 Å,单位晶胞密度为6.4179 g/cm3。利用所得数据测定了cZrO2的杨氏模量、体积模量、泊松比和硬度分别为545.12 GPa、136.464 GPa、0.1898和12.663(Hv)。结果表明,cZrO2是一种具有机械稳定性和热力学性质的耐火材料,作为纳米材料具有多种形式的结构和催化应用潜力。
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