化学
化学选择性
碳化物
催化作用
氢胺化
纳米团簇
插入反应
位阻效应
星团(航天器)
组合化学
吡啶
过渡金属
胺气处理
沮丧的刘易斯对
过渡状态
路易斯酸
铜
有机化学
烷基化
迁移插入
配体(生物化学)
高分子化学
光化学
氧化加成
金属
反应机理
密度泛函理论
作者
Teng Jia,Miaomiao Zhang,Rui Liu,Chuanxin Sun,Jie Ai,Zheng Wang,Yu Lan,Shuang‐Quan Zang
摘要
Due to the strong coordination effect between aliphatic amines and transition metal catalysts, the activity of the catalyst is inhibited by aliphatic amines' strong Lewis basicity, leading to poor chemoselectivity and a significant challenge to the N-H insertion reaction. Here, we report a highly stable copper cluster (Cu3NC(NHC)) with dynamic catalytic sites for the first time that is used to efficiently and chemoselectively catalyze the N-H insertion reaction of aliphatic amines. Pyridine groups as dynamic ligands and aliphatic amines could compete for coordination to prevent catalyst deactivation due to passivation. The dissociated dynamic ligands could regulate the steric effect of the catalyst to achieve highly selective alkylation of primary amines. Moreover, the reaction afforded high chemoselectivity between the C═C bond and the N-H bond by forming a Cu3NC(NHC)-carbenoid intermediate. TON of the N-H insertion reaction has reached 79200. The reaction could be applied in pharmaceutical synthesis and late-stage functionalization. Mechanistic studies and density functional theory demonstrate that this process of generating Cu3NC(NHC)-carbenoid was both kinetically and thermodynamically favorable and that this process may not be the rate-limiting step. This investigation highlights the broad application prospects of metal nanoclusters in the field of organic catalysis, providing a new idea for the development of cluster chemistry.
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