羧化
化学
催化作用
动力学分辨率
有机化学
试剂
羧酸
对映选择合成
组合化学
作者
Xiao‐Wang Chen,Chao Li,Yong‐Yuan Gui,Jun‐Ping Yue,Qi Zhou,Li‐Li Liao,Jun Yang,Jian‐Heng Ye,Da‐Gang Yu
标识
DOI:10.1002/anie.202403401
摘要
Abstract Upgrading CO 2 to value‐added chiral molecules via catalytic asymmetric C−C bond formation is a highly important yet challenging task. Although great progress on the formation of centrally chiral carboxylic acids has been achieved, catalytic construction of axially chiral carboxylic acids with CO 2 has never been reported to date. Herein, we report the first catalytic asymmetric synthesis of axially chiral carboxylic acids with CO 2 , which is enabled by nickel‐catalyzed dynamic kinetic asymmetric reductive carboxylation of racemic aza‐biaryl triflates. A variety of important axially chiral carboxylic acids, which are valuable but difficult to obtain via catalysis, are generated in an enantioconvergent version. This new methodology features good functional group tolerance, easy to scale‐up, facile transformation and avoids cumbersome steps, handling organometallic reagents and using stoichiometric chiral materials. Mechanistic investigations indicate a dynamic kinetic asymmetric transformation process induced by chiral nickel catalysis.
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