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Oxygen vacancy related distortions in rutile TiO_2 nanoparticles: a combined experimental and theoretical study

机译:金红石型TiO_2纳米粒子中与氧空位有关的畸变:结合实验和理论研究

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摘要

The effects of doubly ionized oxygen vacancies [(V_O)ˆ(2+)]on the electronic structure and charge distribution in rutile TiO_2 are studied by combining first-principles calculations based on density functional theory and experimental results from x-ray photoelectron and x-ray absorption measurements carried out in synchrotron facilities on rutile TiO_2 nanoparticles. The generalized gradient approximation of the Perdew-Burke-Ernzerhof functional has demonstrated its suitability for the analysis of the [(V_O)ˆ(2+)]defects in rutile TiO_2. It has been found that the presence of empty electronic states at the conduction band shifted ̴1 eV from t_(2g) and e_(g) states can be associated with local distortions induced by [(V_O)ˆ(2+)]defects, in good agreement with Gauss-Lorentzian band deconvolution of experimental O K-edge spectra. The asymmetry of t(2g) and e(g) bands at the O-K edge has been associated with [(V_O)ˆ(2+)], which can enrich the understanding of studies where the presence of these defects plays a key role, as in the case of doped TiO_2.
机译:通过结合基于密度泛函理论的第一性原理计算以及X射线光电子和X射线的实验结果,研究了双电离氧空位[(V_O)ˆ(2+)]对金红石TiO_2中电子结构和电荷分布的影响。在同步加速器设施中对金红石TiO_2纳米粒子进行射线吸收测量。 Perdew-Burke-Ernzerhof泛函的广义​​梯度逼近证明了其适用于分析金红石TiO_2中的[(V_O)ˆ(2+)]缺陷。已经发现,在导带上从t_(2g)和e_(g)偏移̴1eV的空电子态的存在可能与[[V_O] ˆ(2+)]缺陷引起的局部畸变有关,与实验性O K边缘谱的高斯-洛伦兹带反卷积有很好的一致性。 [(V_O)ˆ(2+)]与OK边缘的t(2g)和e(g)带的不对称有关,这可以丰富对这些缺陷的存在起关键作用的研究的理解,如掺杂的TiO_2一样。

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