卡宾
催化作用
化学
红外光谱学
光化学
胺气处理
高分子化学
药物化学
过渡金属卡宾配合物
组合化学
红外线的
多相催化
立体化学
反应中间体
反应机理
碳纤维
表面改性
作者
Ruixue Zhang,Mingze Sun,Luan Lu,Shu‐Li You,Zhiqiang Niu,Jie Zhao
标识
DOI:10.1002/anie.202517764
摘要
In this study, we present a rationally designed Cu nanowire (NW) catalyst for carbene N─H bond insertion, addressing the challenges associated with highly coordinative aliphatic amines. The heterogeneous Cu NW catalyst with well-defined structures efficiently catalyzed carbene insertion reactions between various α-aryl diazoesters and aliphatic amines including monoethanolamine (MEA), achieving moderate to high yields. Infrared spectroscopy analysis and theoretical studies confirm the strong coordination of MEA on the surface of the Cu NW. Comprehensive kinetic studies reveal that both the two substrates and Cu NW were involved in the rate-determining step (RDS). Notably, the observed second-order dependence on Cu NW suggests that two identical Cu atoms participated in the RDS, one coordinating with the carbene carbon and the other binding with the amine nitrogen. A Hammett-plot study with 4-substituted benzylamines reveal that amines bearing electron-donating groups reacted significantly more slowly than those bearing electron-withdrawing groups, supporting a concerted N─H carbene insertion mechanism. Collectively, these findings elucidate the exceptional catalytic performance of Cu NW in carbene N─H bond insertion reactions, further underscoring the significance of heterogeneous catalysts in organic transformations.
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