双金属片
催化作用
烯烃
化学
芳基
组合化学
电化学
氧化还原
镍
卤代芳基
卤化物
烯烃纤维
合作性
还原消去
有机化学
氧化加成
有机合成
产量(工程)
过渡金属
路易斯酸
配体(生物化学)
电催化剂
作者
Pengwei Hu,Chao Yang,Lin Guo,Wujiong Xia
标识
DOI:10.1038/s41467-026-72546-x
摘要
Alkene 1,1-difunctionalization holds significant importance in organic synthesis due to its ability to effectively enhance the complexity and functionality of molecular frameworks. Herein, we report an electrochemical strategy for 1,1-difunctionalization of halogenated aromatics with unactivated alkenes using synergistic Fe/Ni catalysis. This system integrates redox activity of nickel with Lewis acid functionality of iron: the nickel catalyst governs aryl halide oxidative addition and alkene migration, while iron species activates catalytic sites, stabilizes radical acceptors, and precisely regulates electrochemical reduction sequences/selectivities. The reaction system is applicable to a wide range of substrates, including electron-rich and electron-deficient aryl halides, polycyclic compounds, and bioactive natural products (100 examples). Gram-scale synthesis maintains 63% yield, supporting industrial viability. Mechanistic studies elucidate the unique cooperativity of this iron-nickel bimetallic system, providing a theoretical framework for the design of diverse difunctionalization reactions.
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