单独一对
化学
离域电子
阳离子聚合
杂原子
催化作用
密度泛函理论
静电学
自然键轨道
计算化学
非共价相互作用
分解
路易斯酸
戒指(化学)
化学物理
分子
物理化学
有机化学
氢键
作者
Hua Hao,Xiaotian Qi,Weiping Tang,Peng Liu
出处
期刊:Organic Letters
[American Chemical Society]
日期:2021-05-19
卷期号:23 (11): 4411-4414
被引量:26
标识
DOI:10.1021/acs.orglett.1c01351
摘要
Lone pair−π (LP−π) interactions between Lewis basic heteroatoms, such as oxygen and sulfur, and electron-deficient π systems are important noncovalent interactions. However, they have seldom been used to control catalyst–substrate interactions in catalysis. We performed density functional theory calculations to investigate the strengths of LP−π interactions between different lone pair donors and cationic π systems, and in different complexation geometries. Energy decomposition analysis calculations indicated that the dominant stabilizing force in LP−π complexes is electrostatic interaction and the electrostatic potential surface of the π system predicts the most favorable site for forming LP−π complexes. Benzotetramisole (BTM) is revealed as a privileged acyl transfer catalyst that promotes LP−π interactions because the positive charge of the acylated BTM is delocalized onto the dihydroimidazole ring, which binds strongly with a variety of oxygen and sulfur lone pair donors.
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