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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Ab initio prediction of the structural, electronic, elastic and thermodynamic properties of the tetragonal ternary intermetallics XCu2Si2 (X = Ca, Sr)
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Ab initio prediction of the structural, electronic, elastic and thermodynamic properties of the tetragonal ternary intermetallics XCu2Si2 (X = Ca, Sr)

机译:从头开始预测四方三元金属间化合物XCu2Si2(X = Ca,Sr)的结构,电子,弹性和热力学性质

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Structural parameters, electronic structure, elastic constants and thermodynamic properties of the tetragonal ternary intermetallics CaCu2Si2 and SrCu2Si2 are investigated theoretically for the first time using the plane-wave ultra-soft pseudopotential method based on the density functional theory. The calculated equilibrium structural parameters agree well with the existing experimental data. Pressure dependence of the structural parameters is also explored. Analysis of the band structure, total and site-projected l-decomposed densities of states and valence charge distributions reveals the conducting character of both considered materials with a mixture of ionic-covalent chemical bonding character. Pressure dependences of the single-crystal elastic constants C-ij for CaCu2Si2 and SrCu2Si2 are explored. The elastic wave velocities propagating along the principal crystallographic directions are numerically estimated. The elastic anisotropy is estimated and further illustrated by 3D-direction-dependent of the Young's modulus. A set of some macroscopic elastic moduli, including the bulk, Young's and shear moduli, Poisson's coefficient, average elastic wave velocities and Debye temperature, were calculated for polycrystalline CaCu2Si2 and SrCu2Si2 from the C-ij via the Voigt-Reuss-Hill approximations. Through the quasiharmonic Debye model, which takes into account the phonon effects, the temperature and pressure dependencies of the bulk modulus, unit cell volume, volume thermal expansion coefficient, Debye temperature and volume constant and pressure constant heat capacities of CaCu2Si2 and SrCu2Si2 are explored systematically in the ranges of 0-40 GPa and 0-1400 K.
机译:基于密度泛函理论的平面波超软pseudo势理论首次对四方三元金属间化合物CaCu2Si2和SrCu2Si2的结构参数,电子结构,弹性常数和热力学性质进行了理论研究。计算得出的平衡结构参数与现有实验数据吻合良好。还探讨了结构参数的压力依赖性。对能带结构,状态的总和局部投影的l分解密度和价电荷分布的分析揭示了两种考虑的材料的导电特性,这些材料具有离子-共价化学键合特性。探索了CaCu2Si2和SrCu2Si2的单晶弹性常数C-ij的压力依赖性。数值估计沿主晶体学方向传播的弹性波速度。估计弹性各向异性,并通过与杨氏模量相关的3D方向进行说明。通过Voigt-Reuss-Hill近似从C-ij计算出多晶CaCu2Si2和SrCu2Si2的一组宏观弹性模量,包括体积模量,杨氏模量和剪切模量,泊松系数,平均弹性波速度和德拜温度。通过考虑声子效应的准谐波德拜模型,系统地研究了CaCu2Si2和SrCu2Si2的体积模量,晶胞体积,体积热膨胀系数,德拜温度和体积常数以及压力常数热容的温度和压力依赖性。在0-40 GPa和0-1400 K的范围内。

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