异构化
化学
炔烃
分子内力
加合物
立体选择性
催化作用
路易斯酸
氟化物
卤化物
药物化学
亚甲基
光化学
立体化学
有机化学
无机化学
作者
E. Ali McKnight,Ramon Arora,Ekadashi Pradhan,Yuriko H. Fujisato,Ayonitemi J. Ajayi,Mark Lautens,Tao Zeng,Christine M. Le
标识
DOI:10.26434/chemrxiv-2022-464nx-v2
摘要
A BF3-catalyzed atom-economical fluorocarbamoylation reaction of alkyne-tethered carbamoyl fluorides is reported. The catalyst acts as both a fluoride source and Lewis acid activator, enabling the formal insertion of alkynes into strong C–F bonds through a halide recycling mechanism. The developed method provides access to 3-(fluoromethylene)oxindoles and γ-lactams with excellent stereoselectivity, including fluorinated derivatives of known protein kinase inhibitors. Experimental and computational studies support a stepwise mechanism for the fluorocarbamoylation reaction involving a turnover-limiting cyclization step, followed by internal fluoride transfer from a BF3-coordinated carbamoyl adduct. For methylene oxindoles, a thermodynamically driven Z-E isomerization is facilitated by a transition state with aromatic character. In contrast, this aromatic stabilization is not relevant for γ-lactams, resulting in a higher barrier for isomerization and the exclusive formation of the kinetic Z-isomer.
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