Bobo M Victoria, Kuchta Joseph J, Vannucci Aaron K
Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC 29208, USA.
Org Biomol Chem. 2021 Jun 9;19(22):4816-4834. doi: 10.1039/d1ob00396h.
Research in the development of molecular organic photocatalysts for applications in chemical syntheses has burgeoned in recent years. While organic photosensitizers have been known for over a century, tuning the properties of these molecules to increase photocatalytic efficiencies is now of growing importance. The properties that help improve the performance of organic photocatalysts include: a wider range of redox potentials, increased molar absorptivity (ε) in the visible spectrum, increased quantum yields (Φ), long-lived excited-state lifetimes (ns to μs), and increased chemical stability. This review examines some of the recent advancements in the development of molecular organic photocatalysts, specifically cyanoarenes, acridinium dyes, phenazines, thiazines, oxazines, and xanthenes, with respect to these properties and examines the chemical synthesis routes now achieved by organic photocatalysts.
近年来,用于化学合成的分子有机光催化剂的开发研究蓬勃发展。虽然有机光敏剂已被人们所知超过一个世纪,但调节这些分子的性质以提高光催化效率现在变得越来越重要。有助于提高有机光催化剂性能的性质包括:更宽的氧化还原电位范围、可见光谱中摩尔吸光率(ε)增加、量子产率(Φ)提高、长寿命激发态寿命(纳秒到微秒)以及化学稳定性增强。本综述考察了分子有机光催化剂,特别是氰基芳烃、吖啶鎓染料、吩嗪、噻嗪、恶嗪和呫吨在这些性质方面的一些最新进展,并考察了有机光催化剂目前实现的化学合成路线。