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首页> 外文期刊>International Journal of Quantum Chemistry >First-Principles Calculation of Formation Energy of Neutral Point Defects in Perovskite-Type BaTi03
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First-Principles Calculation of Formation Energy of Neutral Point Defects in Perovskite-Type BaTi03

机译:钙钛矿型BaTi03中性点缺陷形成能的第一性原理计算

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Quantitative analysis of the formation energy of neutral point defects in perovskite-type BaTiO_3 was carried out by first-principles calculation.A 40-atom supercell was employed and relaxation of atoms within the second-nearest-neighbor shell of the vacancy was taken into account.The formation energy was calculated as a function of the atomic chemical potential of the constituent atoms.The theoretical formation energy of the O vacancy in BaTiO_3 shows negative values in the case of the reduction limit of BaTiO_3,which is in good agreement with experimental results showing an abundance of O vacancies when annealed in reducing atmosphere and n-type electrical conduction.On the other hand,the formation energies of the Ba vacancy and Ti vacancy in BaTiO_3 even under the oxidizing condition are as large as 2.21 and 5.65 eV,respectively.This also well corresponds to the experimental fact that the Ba and Ti vacancies are not formed alone in BaTiO_3.
机译:通过第一性原理对钙钛矿型BaTiO_3的中性点缺陷的形成能进行了定量分析,采用40原子的超级电池,并考虑了空位的第二近邻壳内原子的弛豫计算形成能是组成原子的原子化学势的函数。在BaTiO_3还原极限的情况下,BaTiO_3中O空位的理论形成能显示为负值,与实验结果吻合良好在还原气氛和n型电导率下退火时,O的空位丰富。另一方面,即使在氧化条件下,BaTiO_3中Ba空位和Ti空位的形成能也分别高达2.21和5.65 eV。这也与实验事实相符,即BaTiO_3中并非单独形成Ba和Ti空位。

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