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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Review on modified TiO_2 photocatalysis under UV/visible light: Selected results and related mechanisms on interfacial charge carrier transfer dynamics
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Review on modified TiO_2 photocatalysis under UV/visible light: Selected results and related mechanisms on interfacial charge carrier transfer dynamics

机译:紫外/可见光下改性TiO_2光催化研究进展:界面电荷载流子迁移动力学的选择结果及相关机理

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摘要

Titania is one of the most widely used benchmark standard photocatalysts in the field of environmental applications. However, the large band gap of titania and massive recombination of photogenerated charge carriers limit its overall photocatalytic efficiency. The former can be overcome by modifying the electronic band structure of titania including various strategies like coupling with a narrow band gap semiconductor, metal iononmetal ion doping, codoping with two or more foreign ions, surface sensitization by organic dyes or metal complexes, and noble metal deposition. The latter can be corrected by changing the surface properties of titania by fluorination or sulfation or by the addition of suitable electron acceptors besides molecular oxygen in the reaction medium. This review encompasses several advancements made in these aspects, and also some of the new physical insights related to the charge transfer events like charge carrier generation, trapping, detrapping, and their transfer to surface are discussed for each strategy of the modified titania to support the conclusions derived. The synergistic effects in the mixed polymorphs of titania and also the theories proposed for their enhanced activity are reported. A recent venture on the synthesis and applications of anatase titania with a large percentage of reactive {001} facets and their band gap extension to the visible region via nonmetal ion doping which is a current hot topic is briefly outlined.
机译:二氧化钛是环境应用领域中使用最广泛的基准标准光催化剂之一。然而,二氧化钛的大带隙和光生电荷载流子的大量重组限制了其总体光催化效率。前者可以通过修改二氧化钛的电子能带结构来克服,包括各种策略,例如与窄带隙半导体耦合,金属离子/非金属离子掺杂,与两个或多个外来离子共掺杂,有机染料或金属配合物的表面敏化,以及贵金属沉积。后者可以通过氟化或硫酸化改变二氧化钛的表面性质或通过在反应介质中添加除分子氧之外的合适的电子受体来校正。这篇综述涵盖了在这些方面取得的一些进展,并且还讨论了与改性二氧化钛的每种策略有关的与电荷转移事件相关的一些新的物理见解,例如电荷载流子的产生,俘获,去俘获以及它们向表面的转移。结论得出。报道了在二氧化钛的混合多晶型物中的协同作用以及为提高其活性而提出的理论。简要概述了具有大量反应性{001}刻面的锐钛矿型二氧化钛的合成和应用以及通过非金属离子掺杂将它们的带隙扩展到可见区的最新风险,这是当前的热门话题。

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