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Influence of Oxygen Vacancy Density on the Polaronic Configuration in Rutile

机译:氧空位密度对金红石中极化子构型的影响

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摘要

Polaronic configurations that were introduced by oxygen vacancy in rutile TiO2 crystal have been studied by the DFT + U method. It is found that the building block of TiO6 will expand when extra electron is trapped in the central Ti atom as polaron. With manually adjusting the initial geometry of oxygen vacancy structure, a variety of polaronic configurations are obtained after variable-cell relaxation. By calculating different sizes of supercell model, it is found that the most stable configuration can be influenced by the density of oxygen vacancy. With increasing interaction between vacancies, the most stable polaronic configuration change from small polaronic configuration to mixed configuration.
机译:通过DFT + U方法研究了由氧空位引入的金红石型TiO2晶体的极化结构。发现当多余的电子作为中心极化子俘获在中心Ti原子中时,TiO6的结构单元将膨胀。通过手动调整氧空位结构的初始几何形状,可变细胞弛豫后可获得各种极化子构型。通过计算不同大小的超级电池模型,发现最稳定的构型可能受到氧空位密度的影响。随着空位之间相互作用的增加,最稳定的极化结构从小极化结构变为混合结构。

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