Liu Yan, Li Rui, Lv Qiyan, Yu Bing
Henan International Joint Laboratory of Rare Earth Composite Material, College of Materials Engineering, Henan University of Engineering, Zhengzhou, Henan Province 451191, China.
School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Singapore 637459, Singapore.
Chem Commun (Camb). 2024 Aug 13;60(66):8645-8657. doi: 10.1039/d4cc02516d.
Recent advances in visible-light-promoted construction of tetrahydroquinolines from dimethylanilines and maleimides are documented. Homogeneous and heterogeneous photocatalytic systems, as well as the reaction mechanism, are emphasized. The mechanism of this photocatalytic annulation reaction is quite clear, , dimethylanilines and maleimides serve as the radical precursors and radical acceptors, respectively. This annulation reaction could serve as an excellent platform for evaluating novel oxidative heterogeneous photocatalytic systems, which could further inspire chemists in this field to develop more efficient photocatalytic systems. Significant opportunities are expected in the future for heterogeneous photocatalysis strategies.
本文记录了可见光促进二甲基苯胺和马来酰亚胺构建四氢喹啉的最新进展。重点介绍了均相和非均相光催化体系以及反应机理。这种光催化环化反应的机理相当明确,二甲基苯胺和马来酰亚胺分别作为自由基前体和自由基受体。这种环化反应可以作为评估新型氧化非均相光催化体系的优良平台,这可能会进一步激励该领域的化学家开发更高效的光催化体系。未来非均相光催化策略有望带来重大机遇。