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First-principle Investigation of Structural, Elastic, Electronic and Thermal properties of Dysprosium Hafnate Oxides

机译:Ha酸Ox氧化物的结构,弹性,电子和热学性质的第一性原理研究

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Systematic first-principles calculations based on density functional theory were performed on Dy_2Hf_xO_(3+2x) (x = 0, 1, and 2) compositions. A complete set of elastic parameters including elastic constants, Hill's bulk moduli, Young's moduli, shear moduli and Poisson's ratio were calculated. Analyses of densities of states and charge densities and electron localization functions suggest that the oxide bonds are highly ionic with some degree of covalency in the Hf-O bonds. Thermal properties including the mean sound velocity, Debye temperature, and minimum thermal conductivity were obtained from the elastic constants.
机译:对Dy_2Hf_xO_(3 + 2x)(x = 0、1和2)成分进行了基于密度泛函理论的系统第一性原理计算。计算了一组完整的弹性参数,包括弹性常数,希尔的体积模量,杨氏模量,剪切模量和泊松比。对状态密度和电荷密度以及电子定位功能的分析表明,氧化键是高度离子化的,在Hf-O键中具有一定程度的共价键。由弹性常数获得包括平均声速,德拜温度和最小导热率在内的热性能。

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