化学
对映选择合成
烯丙基重排
均分解
共轭体系
吡那考
催化作用
立体化学
键裂
不对称诱导
组合化学
金属转移
立体异构
氨基酸
有机化学
非对映体
联轴节(管道)
手性助剂
手性(物理)
作者
Yu-hang Peng,Wei Ding,Zhen-Yao Dai,Y W Sun,Lian‐Feng Fan
摘要
ABSTRACT The asymmetric functionalization of nonactivated alkylboronic pinacol esters (APEs) represents a longstanding challenge, owing to their intrinsic inertness toward conventional two‐electron transmetalation pathways and the difficulty in achieving precise stereochemical control over carbon‐centered radicals. Herein, we report a copper‐catalyzed asymmetric deborylative radical coupling enabled by amino radical transfer (ART). By employing aminobenzoates as dual‐function reagents, acting both as aminyl radical precursors to trigger ART‐mediated homolytic C(sp 3 )–B bond cleavage and as oxygen nucleophiles, this three‐component transformation enables enantioselective coupling of APEs with conjugated dienes. The method delivers structurally diverse chiral allylic esters with excellent enantioselectivities (up to 99% ee). Furthermore, this protocol enables the concise formal synthesis of natural products and the modular construction of chiral ionizable lipids with precise three‐dimensional architectures. These lipids achieve enhanced organ‐selective mRNA delivery, exhibiting extrahepatic targeting with an improved preference for the spleen. Notably, this work establishes a versatile catalytic platform for transforming bench‐stable APEs feedstocks into oxygen‐containing chiral molecules, facilitating the development of tissue‐specific genetic medicines.
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