偶极子
单独一对
静电学
轨道重叠
化学
背景(考古学)
分子轨道
原子轨道
非键轨道
计算化学
自然键轨道
化学物理
物理
分子物理学
分子
电子
量子力学
物理化学
生物
有机化学
古生物学
密度泛函理论
作者
Kamila B. Muchowska,Dominic J. Pascoe,Stefan Borsley,Ivan V. Smolyar,Ioulia K. Mati,Catherine Adam,Gary S. Nichol,Kenneth B. Ling,Scott L. Cockroft
标识
DOI:10.1002/anie.202005739
摘要
Abstract Interactions between carbonyl groups are prevalent in protein structures. Earlier investigations identified dominant electrostatic dipolar interactions, while others implicated lone pair n→π* orbital delocalisation. Here these observations are reconciled. A combined experimental and computational approach confirmed the dominance of electrostatic interactions in a new series of synthetic molecular balances, while also highlighting the distance‐dependent observation of inductive polarisation manifested by n→π* orbital delocalisation. Computational fiSAPT energy decomposition and natural bonding orbital analyses correlated with experimental data to reveal the contexts in which short‐range inductive polarisation augment electrostatic dipolar interactions. Thus, we provide a framework for reconciling the context dependency of the dominance of electrostatic interactions and the occurrence of n→π* orbital delocalisation in C=O⋅⋅⋅C=O interactions.
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