对映选择合成
化学
烯烃
部分
硒
烯丙基重排
催化作用
组合化学
三元络合物
对映体
三元运算
硫黄
对映体过量
有机化学
酶
程序设计语言
计算机科学
作者
Tao Lei,Sebastián Graf,Christopher Schöll,Felix Krätzschmar,Bernhard J. Gregori,Theresa Appleson,Alexander Breder
标识
DOI:10.1021/acscatal.3c04443
摘要
An adaptable, sulfur-accelerated photoaerobic selenium-π-acid ternary catalyst system for the enantioselective allylic redox functionalization of simple, nondirecting alkenes is reported. In contrast to related photoredox catalytic methods, which largely depend on olefinic substrates with heteroatomic directing groups to unfold high degrees of stereoinduction, the current protocol relies on chiral, spirocyclic selenium-π-acids that covalently bind to the alkene moiety. The performance of this ternary catalytic method is demonstrated in the asymmetric, photoaerobic lactonization and cycloamination of enoic acids and unsaturated sulfonamides, respectively, leading to an averaged enantiomeric ratio (er) of 92:8. Notably, this protocol provides for the first time an asymmetric, catalytic entryway to pharmaceutically relevant 3-pyrroline motifs, which was used as a platform to access a 3,4-dihydroxyproline derivative in only seven steps with a 92:8 er.
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