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Enhancing the Photocatalytic Activity of TiO2 Catalysts

机译:提高二氧化钛的光催化活性催化剂

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摘要

To address energy and environmental problems, innumerable titanium dioxide (TiO2)-based photocatalysts have been reported over the last four decades. TiO2 has attracted immense interest because it is low-cost, abundant, and photoresponsive. Sunlight-driven fuel production is one of the ideal photocatalytic approaches in terms of economics and the environment. However, performance issues with TiO2 photocatalysts remain, including insufficient charge separation due to the rapid recombination of photogenerated charge carriers, and poor utilization of light, because of the material's wide bandgap. To be economically efficient, TiO2 photocatalysts responsive to visible light are essential. Many researchers have investigated effective modification methods for this purpose. Numerous studies have focused on enhancing photocatalytic activity by modifying TiO2. Methods include combining TiO2 with noble metals, incorporating metals or nonmetals, and introducing vacancies by chemical and physical methods. In addition, many studies have also been conducted to comprehensively determine the underlying reaction mechanisms, and thus guide future research directions. This Review aims to understand the basic principles of photolysis, to summarize recent research trends, to envision future research directions, and to help the development of a new type of TiO2-based photocatalysts for enhanced solar energy conversion efficiency.
机译:为了解决能源和环境问题,无数的二氧化钛(TiO2)的论文已报告在过去四十年。因为它是低成本的,丰富的,光敏。是一个理想的光催化方法经济和环境。与二氧化钛催化剂性能问题依然存在,包括足够的电荷分离由于photogenerated的快速重组电荷载体,可怜的光的利用率,因为材料的宽禁带。经济高效,二氧化钛催化剂对可见光响应是至关重要的。研究人员调查了有效改性方法。研究把重点放在了提高光催化活动通过修改二氧化钛。将二氧化钛与贵金属,合并金属或非金属元素,引入空缺化学和物理方法。研究也一直在进行全面确定潜在的反应机制,从而指导今后的研究的方向。光解的基本原则,总结最近的研究趋势,预见未来研究方向,并帮助开发的一种新型的TiO2-based催化剂提高太阳能转换效率。

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