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水团簇平衡的动力学与机制

Kinetics and mechanism of water cluster equilibria.

作者信息

Weinhold F

机构信息

Theoretical Chemistry Institute and Department of Chemistry, University of Wisconsin , Madison, Wisconsin 53706, United States.

出版信息

J Phys Chem B. 2014 Jul 17;118(28):7792-8. doi: 10.1021/jp411475s. Epub 2014 Jan 29.

Abstract

We combine hybrid density functional and transition state theory to investigate dynamical and mechanistic features of important aggregation, isomerization, and exchange pathways for cluster constituents of liquid water, building on the general concepts of quantum cluster equilibrium (QCE) theory. Such calculations confirm the extreme dynamical volatility of leading water cluster structural motifs, consistent with known ultrafast relaxation properties of liquid water and contrary to the superficial static imagery often associated with thermodynamic-level description. We identify low-barrier mechanistic pathways and associated donor-acceptor orbital interactions that lead to facile scrambling of covalent and H-bond cluster motifs with remarkably small energetic barriers, significantly less than required to break even a single covalent or H-bond in isolation.

摘要

我们结合杂化密度泛函和过渡态理论,基于量子团簇平衡(QCE)理论的一般概念,研究液态水团簇成分的重要聚集、异构化和交换途径的动力学和机理特征。此类计算证实了主要水团簇结构基序的极端动力学挥发性,这与液态水已知的超快弛豫特性一致,且与通常与热力学层面描述相关的表面静态图像相反。我们确定了低势垒的机理途径以及相关的供体 - 受体轨道相互作用,这些相互作用导致共价和氢键团簇基序的轻松重排,其能量势垒非常小,远低于单独打破哪怕一个共价键或氢键所需的能量。

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