Effect of interstitial hydrogen on structural and electronic properties of BaTiO3

A. Stashans, J. Chimborazo
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引用次数: 19

Abstract

Abstract We investigate the geometry and electronic structure of an interstitial H atom in the BaTiO3 crystal considering both cubic and tetragonal crystallographic lattices. A quantum-chemical method based on the Hartree-Fock formalism is used throughout the study. Interstitial H is found to bind to one of the O atoms, forming the so-called OH group. At equilibrium, the O-H distances are found to be 0.89 and 0.91 Å for cubic and tetragonal lattices respectively. The performed automated geometry optimization procedure of the defective region shows considerable outward movements of atoms closest to the impurity. The role of the H impurity in ferroelectric polarization in the BaTiO3 crystal is analysed using the results obtained in connection with the available experimental data on ferroelectric perovskites.
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间隙氢对BaTiO3结构和电子性能的影响
摘要:本文研究了BaTiO3晶体中间隙H原子的几何结构和电子结构,考虑了立方晶格和四方晶格。在整个研究中使用了基于Hartree-Fock形式的量子化学方法。发现间隙H与一个O原子结合,形成所谓的OH基团。在平衡状态下,发现立方晶格和四边形晶格的O-H距离分别为0.89和0.91 Å。缺陷区域的自动几何优化过程显示,靠近杂质的原子向外移动。结合铁电性钙钛矿的实验数据,分析了氢杂质对BaTiO3晶体铁电极化的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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