羧化
烯丙基重排
烯烃
化学
催化作用
区域选择性
组合化学
羰基化
基质(水族馆)
铜
功能群
有机化学
羧酸盐
表面改性
炔烃
羧酸
第2组金属有机化学
有机合成
双键
路易斯酸
原子经济
立体化学
钯
作者
Junli Yue,Huan‐Zhen Li,Lu Liu,Shuai Liu,Zu‐Tong Li,Xin‐Yi Zhang,Wen Wang,Jincheng Xu,Lei Song,Hanjiao Chen,Xia Jiang,Jian‐Bo Zhu,Si‐Shun Yan,Jian‐Heng Ye,Da‐Gang Yu
摘要
ABSTRACT Catalytic carboxylation of ubiquitous C─H bonds with CO 2 has been demonstrated as a sustainable and streamlined pathway to valuable carboxylic acids. However, the catalytic carboxylation of abundant allylic C(sp 3 )─H bonds with CO 2 , which presents a unique opportunity to synthesize structurally diverse 3‐butenoic acids, still remains challenging. Herein, we report the first copper metallaphotoredox‐catalyzed formal allylic C(sp 3 )─H carboxylation with CO 2 , enabling efficient and selective synthesis of 3‐butenoic acids under mild and redox‐neutral conditions. This strategy lies in combining highly reducing photocatalysts to generate alkene radical anion intermediates with copper catalysis to orchestrate regioselective elimination, providing a distinct pathway from traditional allylic C(sp 3 )─H functionalization via forming allyl‐metal intermediates. This method features high atom and step economy, broad substrate scope, good functional group tolerance, facile scalability, and easy access to valuable compounds, including diverse bioactive molecules, natural products, and 13 C‐labeled anti‐inflammatory drug sulindac.
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