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Ab initio studies of Nb doping effect on the formation of oxygen vacancy in rutile TiO_2

机译:Nb掺杂对金红石型TiO_2中氧空位形成的从头算研究

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In this paper, the effect of Nb doping on the formation of O vacancies in rutile TiO_2 is studied by the use of ab initio density-functional calculations. The formation energies are calculated at different doping concentrations (C_(Nb)) and the corresponding electronic structures are analyzed. It is shown that the formation energy is mainly determined by the structural relaxation. As C_(Nb) increases, the formation energy first increases and then decreases with the maximum in vicinity of C_(Nb)=11.1 at%. The investigation of electronic structures shows that the distribution of excess electrons, which is affected by the doping concentration and the types of oxygen vacancy, determines the relaxation and formation energy of oxygen vacancy. Our calculated results indicate that the formation of oxygen vacancy in rutile TiO_2 can be most effectively suppressed by Nb doping in a large range of Nb doping concentration. This may be one of the reasons why the proper amount of Nb doping can improve the oxidation resistance of γ-TiAl.
机译:本文采用从头算密度函数计算方法研究了Nb掺杂对金红石型TiO_2中O空位形成的影响。在不同的掺杂浓度(C_(Nb))下计算形成能,并分析相应的电子结构。结果表明,形成能主要取决于结构弛豫。随着C_(Nb)的增加,地层能量首先增加,然后以C_(Nb)= 11.1 at%附近的最大值减小。电子结构研究表明,过量电子的分布受掺杂浓度和氧空位类型的影响,决定了氧空位的弛豫和形成能。我们的计算结果表明,在较大的Nb掺杂浓度范围内,Nb掺杂可以最有效地抑制金红石TiO_2中氧空位的形成。这可能是为什么适量的Nb掺杂可以改善γ-TiAl的抗氧化性的原因之一。

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