三重结构ABi2O6 (A = Mg, Zn)的结构、弹性、电子和光学性质的第一性原理研究

M. A. Rahman, M. A. Rahman, U. Chowdhury, M. Bhuiyan, Md. Lokman Ali, M. R. Sarker
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引用次数: 9

摘要

摘要利用密度泛函理论和广义梯度近似的第一性原理计算,研究了具有三重结构的新型铋氧化物ABi2O6 (A = Mg, Zn)的结构、弹性、电子和光学性质。通过几何优化得到的几何结构与实验值基本一致。计算的结构参数与试验结果吻合较好。计算并讨论了优化后的晶格参数、6个独立弹性常数(C11、C12、C13、C33、C44和C66)、体积模量(B)、剪切模量(G)、杨氏模量(Y)、皮格比(G/B)、泊松比(ν)和弹性各向异性(A)。这是对这些化合物的电子、弹性和光学性质的第一个定量理论预测。电子能带结构的研究表明,这些化合物是电导体,主要由bi6p态贡献。弹性常数和其他模量的分析表明,弹性和脆性行为具有很大的各向异性。用能带结构讨论了这两种化合物不同光学性质特征的来源。预测化合物在低能区的大反射率可能有助于制备高质量的涂层候选材料,以避免太阳加热。
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First principles investigation of structural, elastic, electronic and optical properties of ABi2O6 (A = Mg, Zn) with trirutile-type structure
Abstract First principles calculations based on density functional theory with generalized gradient approximation are performed to investigate the structural, elastic, electronic, and optical properties of new bismuth oxides, ABi2O6 (A = Mg, Zn) with the trirutile-type structure. Initially, the geometry structures obtained by geometry optimization are consistent with the experimental values. The calculated structural parameters show a good agreement with the experimental results. The optimized lattice parameters, six independent elastic constants (C11, C12, C13, C33, C44 and C66), bulk modulus (B), shear modulus (G), Young’s modulus (Y), Pugh’s ratio (G/B), Poisson’s ratio (ν), and elastic anisotropy (A) are calculated and discussed. This is the first quantitative theoretical prediction of the electronic, elastic, and optical properties of these compounds. The investigation of the electronic band structures reveals that these compounds are electrical conductors, with contribution predominantly from the Bi 6p states. The analysis of the elastic constants and other moduli shows large anisotropy on elasticity and brittle behavior. The origins of features that appear in different optical properties of these two compounds have been discussed using band structures. The large reflectivity of the predicted compounds in the low energy region might be helpful in high-quality candidate materials for coating to avoid solar heating.
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Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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