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First-principles study on transition metal-doped anatase TiO2

机译:过渡金属掺杂的锐钛矿型TiO2的第一性原理研究

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摘要

The electronic structures, formation energies, and band edge positions of anatase TiO2 doped with transition metals have been analyzed by ab initio band calculations based on the density functional theory with the planewave ultrasoft pseudopotential method. The model structures of transition metal-doped TiO2 were constructed by using the 24-atom 2 × 1 × 1 supercell of anatase TiO2 with one Ti atom replaced by a transition metal atom. The results indicate that most transition metal doping can narrow the band gap of TiO2, lead to the improvement in the photoreactivity of TiO2, and simultaneously maintain strong redox potential. Under O-rich growth condition, the preparation of Co-, Cr-, and Ni-doped TiO2 becomes relatively easy in the experiment due to their negative impurity formation energies, which suggests that these doping systems are easy to obtain and with good stability. The theoretical calculations could provide meaningful guides to develop more active photocatalysts with visible light response.
机译:掺杂了过渡金属的锐钛矿型TiO2的电子结构,形成能和能带边缘位置已经通过基于平面波超软with势方法的密度泛函理论从头计算谱带进行了分析。利用24原子2×1 structures×were1的锐钛矿型TiO2超级电池构建了过渡金属掺杂的TiO2模型结构,其中一个Ti原子被过渡金属原子取代。结果表明,大多数过渡金属掺杂可以使TiO2的带隙变窄,改善TiO2的光反应性,同时保持强的氧化还原电位。在富氧生长条件下,Co,Cr和Ni掺杂的TiO2由于其负的杂质形成能而在实验中变得相对容易制备,这表明这些掺杂体系易于获得并且具有良好的稳定性。理论计算可以为开发更多具有可见光响应的活性光催化剂提供有意义的指导。

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