吡那考
化学
激进的
硼
儿茶酚
有机化学
光化学
药物化学
高分子化学
催化作用
作者
Emy André‐Joyaux,Andrey Kuzovlev,Nicholas D. C. Tappin,Philippe Renaud
标识
DOI:10.1002/anie.202004012
摘要
Abstract The generation of carbon‐centered radicals from air‐sensitive organoboron compounds through nucleohomolytic substitution at boron is a general method to generate non‐functionalized and functionalized radicals. Due to their reduced Lewis acidity, alkylboronic pinacol esters are not suitable substrates. We report their in situ conversion into alkylboronic catechol esters by boron‐transesterification with a substoichiometric amount of catechol methyl borate combined with an array of radical chain processes. This simple one‐pot radical‐chain deboronative method enables the conversion of pinacol boronic esters into iodides, bromides, chlorides, and thioethers. The process is also suitable the formation of nitriles and allylated compounds through C−C bond formation using sulfonyl radical traps. The power of combining radical and classical boron chemistry is illustrated with a modular 5‐membered ring formation using a combination of three‐component coupling and protodeboronative cyclization.
科研通智能强力驱动
Strongly Powered by AbleSci AI