用第一性原理计算比较了SnZrO3和PbZrO3的立方Pm3m

M. Taib, M. K. Yaakob, M. Rasiman, F. W. Badrudin, O. H. Hassan, M. Yahya
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引用次数: 2

摘要

利用CASTEP计算机代码实现的密度泛函理论(DFT)第一性原理计算,研究了立方(Pm3m空间群)中钙钛矿SnZrO3 (SZ)的性质。计算了PbZrO3 (PZ)作为参考化合物的晶格参数,结果与实验值有一定的准确性。在这个第一性原理计算中,交换相关函数是基于LDA-CAPZ的,它给出了结构晶格参数的低估,典型误差为2%。在30gpa范围内计算了弹性常数及其与压力的关系,得到了独立的弹性常数(C11、C12、C44)、体模量、B。态密度(DOS)研究表明,SZ和PZ的阴离子o2p、阳离子Sn 5p/Pb 5p和Zr 4d态起着重要作用,它们对应于价态的顶部和导带的底部。同时,SZ和PZ在布里渊区沿高对称方向分别在X-X点处获得直接带隙。Sn和Zr(在SZ中)的出生有效电荷(BEC)分别为+4.26和+7.53。这是由于阳离子轨道与o2p之间的强共价引起的位移引起的键电荷响应。结果表明,阴离子O 2p、阳离子Sn 5p和Zr 4d态在光学跃迁中也起着重要作用,它们分别对应于价态的顶部和导带的底部。对样机的计算结果进行了比较,结果与PZ的计算结果吻合较好。
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Comparative study of cubic Pm3m between SnZrO3 and PbZrO3 by first principles calculation
The properties of perovskite SnZrO3 (SZ) in cubic (Pm3m space group) was investigated via first principles calculation using the density functional theory (DFT) as implemented in CASTEP computer code. The lattice parameter of PbZrO3 (PZ) was calculated as a reference compound and the results show an accuracy values relative to the experimental values. In this first-principle calculations, the exchange-correlation functional is based on LDA-CAPZ which give underestimate in structural lattice parameters with typical errors of 2%. The elastic constants and their pressure dependence were calculated up to 30 GPa, and independent elastic constants (C11, C12, and C44), bulk modules, B are obtained and analyzed. Density of state (DOS) studies reveal that the anion O 2p, cation Sn 5p/Pb 5p and Zr 4d states of SZ and PZ play an important role which correspond to the top of valence states and bottom of conduction band. Meanwhile, direct band gap at X-X point is respectively obtained for both SZ and PZ along the higher symmetry direction in the Brillouin zone. The born effective charges (BEC) values of Sn and Zr (in SZ) have respectively been found to be +4.26 and +7.53. This is attributed to the bond charge response to the displacement caused by the strong covalency between cation orbital and O 2p. Results reveal anion O 2p, cation Sn 5p and Zr 4d states have also played an important role in optical transition in which they respectively correspond to the top of valence states and bottom of conduction band. The results of prototype SZ were compared and showed in good agreement with the calculated results of PZ.
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