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Synergistic Effects on Band Gap-Narrowing in Titania by Codoping from First-Principles Calculations

机译:从第一性原理计算共掺杂对二氧化钛中带隙变窄的协同效应

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摘要

The large intrinsic band gap in TiO2 has hindered severely its potential application for visible-light irradiation. In this study, we have used a passivated approach to modify the band edges of anatase-TiO2 by codoping of X (N, C) with transition metals (TM = W, Re, Os) to extend the absorption edge to longer visible-light wavelengths. It was found that all the codoped systems can narrow the band gap significantly; in particular, (N+W)-codoped systems could serve as remarkably better photocatalysts with both narrowing of the band gap and relatively smaller formation energies and larger binding energies than those of (C+TM) and (N+TM)-codoped systems. Our theoretical calculations provide meaningful guides for experiments to develop more powerful visible-light photocatalysts.
机译:TiO2中的大固有带隙严重阻碍了其在可见光照射中的潜在应用。在这项研究中,我们使用了一种钝化方法,通过将X(N,C)与过渡金属(TM = W,Re,Os)共掺杂来改变锐钛矿型TiO2的能带边缘,从而将吸收边缘扩展至更长的可见光波长。发现所有共掺杂体系都可以显着缩小带隙。特别地,与(C + TM)和(N + TM)掺杂的系统相比,(N + W)掺杂的系统可以作为带隙变窄以及相对较小的形成能和较大的结合能的更好的光催化剂。 。我们的理论计算为开发更强大的可见光光催化剂的实验提供了有意义的指导。

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