School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.
Chem Soc Rev. 2014 Jan 7;43(1):473-86. doi: 10.1039/c3cs60188a. Epub 2013 Oct 25.
The future development of chemistry entails environmentally friendly and energy sustainable alternatives for organic transformations. Visible light photocatalysis can address these challenges, as reflected by recent intensive scientific endeavours to this end. This review covers state-of-the-art accomplishments in visible-light-induced selective organic transformations by heterogeneous photocatalysis. The discussion comprises three sections based on the photocatalyst type: metal oxides such as TiO2, Nb2O5 and ZnO; plasmonic photocatalysts like nanostructured Au, Ag or Cu supported on metal oxides; and polymeric graphitic carbon nitride. Finally, recent strides in bridging the gap between photocatalysis and other areas of catalysis will be highlighted with the aim of overcoming the existing limitations of photocatalysis by developing more creative synthetic methodologies.
化学的未来发展需要为有机转化寻找环保且可持续能源的替代方案。可见光光催化可以解决这些挑战,这反映了最近为此目的进行的密集科学努力。本综述涵盖了通过多相光催化实现可见光诱导选择性有机转化的最新技术成就。讨论分为三个部分,基于光催化剂类型:金属氧化物如 TiO2、Nb2O5 和 ZnO;等离子体光催化剂,如负载在金属氧化物上的纳米结构 Au、Ag 或 Cu;以及聚合石墨相氮化碳。最后,将重点介绍在光催化和其他催化领域之间架起桥梁的最新进展,旨在通过开发更具创造性的合成方法来克服光催化的现有局限性。