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Crystal structure and elastic properties of ZrB compared with ZrB2: A first-principles study

机译:与ZrB2相比,ZrB的晶体结构和弹性性质:第一性原理研究

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The existences of potential crystal structures of ZrB and ZrB2 are studied by means of first-principles molecular dynamics calculations. The face-centered cubic ZrB (space group Fm-3 m, No. 225) with lattice constant a=4.900 A and hexagonal ZrB2 (space group P6/mmm, No. 191) with a=3.170 A and c=3.544 A have been proved to be both mechanically and dynamically stable. The optimized lattice parameters for both ZrB and ZrB2 agree with both the experimental data and previous theoretical calculations. Basic elastic properties of ZrB compared with ZrB2 using the first-principles calculations are investigated. The bulk moduli 160.6 and 229.1 GPa, shear moduli 102.7 and 210.5 GPa, Young's moduli 253.9 and 483.5 GPa, and Poisson ratios 0.2365 and 0.1483, are obtained for ZrB and ZrB2, respectively. Density of state has been explored to discuss the difference of electronic structure between ZrB and ZrB2. The reasons of lower Young's moduli of ZrB compared with that of ZrB2 are discussed as well.
机译:通过第一性原理分子动力学计算研究了ZrB和ZrB2潜在晶体结构的存在。具有晶格常数a = 4.900 A的面心立方ZrB(空间群Fm-3 m,编号225)和具有a = 3.170 A和c = 3.544 A的六边形ZrB2(空间群P6 / mmm,编号191)具有事实证明,它既具有机械稳定性,也具有动态稳定性。 ZrB和ZrB2的最佳晶格参数与实验数据和先前的理论计算均相符。使用第一性原理研究了ZrB与ZrB2的基本弹性特性。对于ZrB和ZrB2,分别获得体模160.6和229.1 GPa,剪切模量102.7和210.5 GPa,杨氏模量253.9和483.5 GPa以及泊松比0.2365和0.1483。为了探讨ZrB和ZrB2之间电子结构的差异,已经探索了状态密度。还讨论了ZrB的杨氏模量低于ZrB2的杨氏模量的原因。

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