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Ab initio electronic structure calculation of oxygen vacancies in rutile titanium dioxide

机译:金红石型二氧化钛中氧空位的从头算电子结构计算

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摘要

The electronic structure of rutile TiO_2-x is studied using first-principles density functional theory (DFT) calculations. Nonstoichiometry in rutile TiO_2 due to defects in the form of oxygen vacancies leads to a considerable change in the electronic structure. In this paper, we calculate the band structure, density of states, and orbital energy distribution in a reduced (oxygen deficient) TiO_2-x for different concentrations of oxygen vacancies (x). Energy levels are found to appear inside the forbidden energy region either as an isolated form of bands at different energy levels or merged with the conduction band depending on the value of x and the size of the super cells
机译:利用第一性原理密度泛函理论(DFT)计算研究了金红石型TiO_2-x的电子结构。由于氧空位形式的缺陷,金红石型TiO_2的非化学计量导致电子结构发生重大变化。在本文中,我们针对不同浓度的氧空位(x)计算了还原(缺氧)TiO_2-x中的能带结构,态密度和轨道能量分布。发现能级以不同能级的孤立带形式出现在禁能区内,或者根据x的值和超级电池的大小与导带合并

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