Elavarasan Selvaraj, Preety Jeyaraj, Kesavan M, Patel Ravi B, Baskar Baburaj
Laboratory of Sustainable Synthesis, Department of Chemistry, SRM Institute of Science and Technology, Kattankulatur, 603 203, Chengalpet (Dt), Tamilnadu, India.
Interdisciplinary Institute of Indian System of Medicine (IIISM), SRM Institute of Science and Technology, Kattankulatur, 603 203, Chengalpet (Dt), Tamilnadu, India.
Org Biomol Chem. 2024 Jun 19;22(24):4912-4921. doi: 10.1039/d4ob00609g.
Herein, a novel transition-metal-free thiol-based donor-acceptor organophotocatalyst-assisted, singlet-oxygen-mediated tandem oxidative cyclization for the synthesis of substituted oxazoles in moderate-to-good yields is described. The developed method demonstrates applicability for the synthesis of various substituted quinoxalines in good-to-excellent yields. The metal-free methodology shows a practical route for the synthesis of oxazole and quinoxaline derivatives, which are privileged moieties prevalent in various biologically active compounds and natural products. To the best of our knowledge, both the thiol photocatalyst and synthesis of oxazoles by visible-light irradiation are reported for the first time.
在此,描述了一种新型的无过渡金属的基于硫醇的供体-受体有机光催化剂辅助的单线态氧介导的串联氧化环化反应,用于以中等到良好的产率合成取代恶唑。所开发的方法证明了其在以良好到优异的产率合成各种取代喹喔啉方面的适用性。这种无金属方法为恶唑和喹喔啉衍生物的合成提供了一条实用途径,这些衍生物是各种生物活性化合物和天然产物中普遍存在的重要部分。据我们所知,硫醇光催化剂和通过可见光照射合成恶唑均为首次报道。