卡宾
环丙烷化
化学
反应性(心理学)
过渡金属卡宾配合物
催化作用
反应中间体
IMes公司
亲核细胞
组合化学
电催化剂
有机化学
有机合成
基质(水族馆)
光化学
氧化加成
还原消去
功能群
反应中间体
转鼓
均相催化
有机催化
作者
Yun-Tao Zheng,Yuan-Xin Wu,Ning Yang,Zhi‐Heng Ma,Guang Wang,Kai Lang,Peng Xiong,Hai chao Xu,Yun-Tao Zheng,Yuan-Xin Wu,Ning Yang,Zhi‐Heng Ma,Guang Wang,Kai Lang,Peng Xiong,Hai chao Xu
摘要
Carbenes are versatile intermediates in organic synthesis, enabling a range of unique bond-forming transformations with high efficiency and selectivity. The catalytic generation of reactive metal carbenes from abundant, low-energy feedstock chemicals represents a highly attractive goal but remains a longstanding unmet challenge in organic synthesis. Among these, aldehydes have rarely been directly employed as carbene precursors in catalytic transformations due to the substantial kinetic and thermodynamic barriers associated with C = O bond activation. Here, we report the direct conversion of aldehydes into reactive iron carbene intermediates under electrocatalytic conditions for carbene transfer reactions. The electrocatalytic method leverages an unprecedented nucleophilic activation of aldehydes by Fe(I), followed by α-elimination to generate the carbene species. The resulting carbenes engage in cyclopropanation and X-H insertion reactions (X = Si, S, N) with broad substrate scope and excellent functional group tolerance, establishing aldehydes as viable direct carbene precursors and offering a sustainable approach to feedstock valorization through electrocatalytic carbene transfer.
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