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通过催化不对称光氧化还原自由基偶联实现烷基卤化物的形式对映选择性取代。

Formal enantioconvergent substitution of alkyl halides via catalytic asymmetric photoredox radical coupling.

机构信息

Key Laboratory of Natural Medicine and Immuno-Engineering of Henan Province, Henan University, Kaifeng, Henan, 475004, China.

Singapore University of Technology and Design, Singapore, 487372, Singapore.

出版信息

Nat Commun. 2018 Jun 22;9(1):2445. doi: 10.1038/s41467-018-04885-3.

Abstract

Classic nucleophilic substitution reactions (S1 and S2) are not generally amenable to the enantioselective variants that use simple and racemic alkyl halide electrophiles. The merging of transition metal catalysis and radical chemistry with organometallic nucleophiles is a versatile method for addressing this limitation. Here, we report that visible light-driven catalytic asymmetric photoredox radical coupling can act as a complementary and generic strategy for the enantioconvergent formal substitution of alkyl haldies with readily available and bench-stable organic molecules. Single-electron reductive debrominations of racemic α-bromoketones generate achiral alkyl radicals that can participate in asymmetric C-C bonds forming cross-coupling reactions with α-amino radicals derived from N-aryl amino acids. A wide range of valuable enantiomerically pure β- and β-amino ketones were obtained in satisfactory yields with good-to-excellent enantioselectivities by using chiral phosphoric acid catalysts to control the stereochemistry and chemoselectivity. Fluoro-hetero-quaternary and full-carbon quaternary stereocenters that are challenging to prepare were successfully constructed.

摘要

经典的亲核取代反应(S1 和 S2)通常不适用于使用简单的外消旋烷基卤代物作为亲电试剂的对映选择性变体。将过渡金属催化和自由基化学与有机金属亲核试剂相结合,是解决这一限制的一种通用方法。在这里,我们报告可见光驱动的催化不对称光氧化还原自由基偶联可以作为一种互补的、通用的策略,用于与易得且稳定的有机分子进行烷基卤化物的对映体收敛形式取代。外消旋α-溴代酮的单电子还原脱溴生成手性烷基自由基,它可以参与不对称 C-C 键形成与 N-芳基氨基酸衍生的α-氨基自由基的交叉偶联反应。使用手性磷酸催化剂控制立体化学和化学选择性,可以以良好到优异的对映选择性获得大量有价值的对映体纯β-和β-氨基酮,产率令人满意。成功构建了具有挑战性的氟杂季碳和全碳季碳立体中心。

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