乙烯基
卡宾
化学
激进的
功能群
环丙烷化
环丙烷
重氮
催化作用
光化学
组合化学
光催化
复分解
烯烃纤维
艾伦
烯烃复分解
有机合成
碳化物
有机化学
过渡金属卡宾配合物
作者
Xiaoyu Lin,Haigen Shen,Zhaobin Wang
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2025-11-03
卷期号:15 (22): 19030-19039
被引量:7
标识
DOI:10.1021/acscatal.5c06888
摘要
Carbene chemistry is at the forefront of modern synthetic methodology due to its ability to unlock a plethora of chemical transformations. Traditional reliance on diazo compounds, while effective, is hindered by their inherent instability, toxicity, and limited functional group tolerance. Recent advances have explored alternative carbene precursors, yet the direct catalytic generation of carbenes from aldehydes remains underexplored. Here, we report a mild iron-catalyzed carbene transfer protocol that directly accesses carbene intermediates from aldehydes via a ketyl radical mechanism. This method obviates the need for prefunctionalized precursors, enabling the synthesis of diverse functionalized cyclopropanes with good efficiency and functional group compatibility. Mechanistic investigations, including radical trapping, σ-bond insertion, and olefin metathesis experiments, corroborate the intermediacy of ketyl radicals and iron carbenes. This work expands the synthetic utility of aldehydes, offering a robust platform for carbene transfer reactions and the synthesis of valuable cyclopropane scaffolds.
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