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Electric-dipole effect of defects on the energy band alignment of rutile and anatase TiO2

机译:缺陷的电偶极效应对金红石和锐钛矿型TiO2能带排列的影响

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摘要

Titanium dioxide materials have been studied intensively and extensively for photocatalytic applications. A long-standing open question is the energy band alignment of rutile and anatase TiO2 phases, which can affect the photocatalytic process in the composite system. There are basically two contradictory viewpoints about the alignment of these two TiO2 phases supported by the respective experiments: (1) straddling type and (2) staggered type. In this work, our DFT plus U calculations show that the perfect rutile(110) and anatase(101) surfaces have the straddling type band alignment, whereas the surfaces with defects can turn the band alignment into the staggered type. The electric dipoles induced by defects are responsible for the reversal of band alignment. Thus the defects introduced during the preparation and post-treatment processes of materials are probably the answer to the above open question regarding the band alignment, which can be considered in real practice to tune the photocatalytic activity of materials.
机译:对于光催化应用,已经对二氧化钛材料进行了广泛而广泛的研究。一个长期存在的悬而未决的问题是金红石相和锐钛矿相TiO2相的能带排列,这会影响复合体系中的光催化过程。关于这两个由各自实验支持的TiO2相的排列,基本上有两个相互矛盾的观点:(1)跨越式和(2)交错式。在这项工作中,我们的DFT和U计算表明,完美的金红石(110)和锐钛矿(101)表面具有跨接型谱带对齐方式,而具有缺陷的表面可以将谱带对齐方式变为交错型。缺陷引起的电偶极子是能带反转的原因。因此,在材料的制备和后处理过程中引入的缺陷可能是上述关于能带对准的未解决问题的答案,可以在实际实践中考虑该问题以调节材料的光催化活性。

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