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Electronic structure elasticity Debye temperature and anisotropy of cubic WO3 from first-principles calculation

机译:通过第一性原理计算立方WO3的电子结构弹性德拜温度和各向异性

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摘要

The electron structure, elastic constant, Debye temperature and anisotropy of elastic wave velocity for cubic WO3 are studied using CASTEP based on density functional theory. The optimized structure is consistent with previous work and the band gap is obtained by computing the electronic structure; the top of the valence band is not at the same point as the bottom of the conduction band, which is an indirect band-gap oxide. Electronic properties are studied from the calculation of band structure, densities of states and charge densities. The bulk and shear moduli, Young's modulus, hardness and Poisson's ratio for WO3 are studied by the elastic constants. We calculated acoustic wave velocities in different directions and estimated the Debye temperature from the acoustic velocity. The anisotropy of WO3 was analysed from the point of view of a pure wave and quasi wave.
机译:基于密度泛函理论,利用CASTEP研究了立方WO3的电子结构,弹性常数,德拜温度和弹性波速度的各向异性。优化后的结构与先前的工作是一致的,并且通过计算电子结构获得了带隙。价带的顶部与导带的底部不在同一点,后者是一种间接的带隙氧化物。通过计算能带结构,态密度和电荷密度来研究电子性质。通过弹性常数研究了WO3的体积模量和剪切模量,杨氏模量,硬度和泊松比。我们计算了不同方向上的声波速度,并根据声速估算了德拜温度。从纯波和准波的角度分析了WO3的各向异性。

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