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关于氢键的本质:计算研究综述及模式探讨

On the nature of hydrogen bonds: an overview on computational studies and a word about patterns.

作者信息

Rozas Isabel

机构信息

Centre for Synthesis and Chemical Biology, School of Chemistry, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Phys Chem Chem Phys. 2007 Jun 14;9(22):2782-90. doi: 10.1039/b618225a. Epub 2007 Feb 23.

Abstract

The nature of hydrogen bond interactions (HB) is still today the subject of many discussions. We present an overview of computational methods and parameters (interaction energy, HB distance and radii, electron density topological parameters or orbital energies) required for an accurate description of HB systems. As well, we present the different correlations that have been found between these descriptors providing a global view of HB interactions. A synopsis of the different HBs reported in terms of their strength was presented. Considering the definitions of covalent and ionic bonds, HB interactions could occur between these two extremes. Thus, we look into some of the very strong HBs (LBHB, CAHB, RAHB) and some of the weak HBs (weak donors: C-H or weak acceptors: pi systems). Subsequently, aspects such as cooperativity or solvation are examined. Finally, we present a study on multiple "parallel" and "bifurcated" HB systems. Our results indicate that HB pattern and electron density determine the strength of the interaction and that "parallel" HB interactions are more stable than the "bifurcated" ones.

摘要

氢键相互作用(HB)的本质至今仍是诸多讨论的主题。我们概述了准确描述HB体系所需的计算方法和参数(相互作用能、HB距离和半径、电子密度拓扑参数或轨道能量)。同样,我们展示了在这些描述符之间发现的不同相关性,从而提供了HB相互作用的全局视图。还给出了根据强度报告的不同HB的简要概述。考虑到共价键和离子键的定义,HB相互作用可能发生在这两个极端之间。因此,我们研究了一些非常强的HB(低能垒氢键、电荷辅助氢键、共振辅助氢键)和一些弱的HB(弱供体:C-H或弱受体:π体系)。随后,研究了协同性或溶剂化等方面。最后,我们展示了对多个“平行”和“分叉”HB体系的研究。我们的结果表明,HB模式和电子密度决定了相互作用的强度,并且“平行”HB相互作用比“分叉”的更稳定。

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