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首页> 外文期刊>Physica, B. Condensed Matter >First-principles calculations on electronic structures of Fe-vacancy-codoped TiO_2 anatase (1 0 1) surface
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First-principles calculations on electronic structures of Fe-vacancy-codoped TiO_2 anatase (1 0 1) surface

机译:Fe空位掺杂TiO_2锐钛矿(1 0 1)表面电子结构的第一性原理计算

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The electronic structures of Fe-doped TiO_2 anatase (1 0 1) surfaces have been investigated by all spin-polarized density functional theory (DFT) plane-wave pseudopotential method. The general gradient approximation (GGA)U (Hubbard coefficient) method has been adopted to describe the exchange-correlation effects. Through the density functional calculations for the formation energies of various configurations, the complex of a substitutional Fe plus an O vacancy was found to form easily in the most range of O chemical potential. The calculated density of the states of the system of Fe-doped surface with a surface oxygen vacancy shows a band gap narrowing from 2.8 to 1.9 eV comparing with the pure surface due to the synergistic effects of surface Fe impurities with O vacancies. The system processes high visible light sensitivity and photocatalytic ability by decreasing extrinsic absorption energy. By comparing the partial DOS of some O and Ti atoms lying in the outermost and bottom layers of Fe-doped surfaces, it was found that the influence of Fe impurities on the electronic structure of the system is localized.
机译:通过所有自旋极化密度泛函理论(DFT)平面波pseudo势方法研究了Fe掺杂的TiO_2锐钛矿(1 0 1)表面的电子结构。通用梯度逼近(GGA)U(Hubbard系数)方法已被用来描述交换相关效应。通过对各种构型的形成能进行密度泛函计算,发现在最广泛的O化学势范围内,容易形成取代铁和O空位的复合物。由于表面Fe杂质与O空位的协同作用,与纯表面相比,所计算的具有表面氧空位的Fe掺杂表面系统的状态密度显示出带隙从2.8eV缩小至1.9eV。该系统通过降低外部吸收能量来处理高可见光灵敏度和光催化能力。通过比较位于掺铁表面的最外层和最底层的一些O和Ti原子的部分DOS,可以发现Fe杂质对系统电子结构的影响是局部的。

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