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水溶液中含水/羟基的铍低聚物的结构与形成机制:密度泛函理论研究

Structures and formation mechanisms of aquo/hydroxo oligomeric beryllium in aqueous solution: a density functional theory study.

作者信息

Jin Xiaoyan, Liao Rongbao, Wu Hai, Huang Zhengjie, Zhang Hong

机构信息

School of Chemistry and Materials Engineering, Fuyang Teachers College, Fuyang, Anhui, 236041, China,

出版信息

J Mol Model. 2015 Sep;21(9):232. doi: 10.1007/s00894-015-2779-x. Epub 2015 Aug 14.

Abstract

The structures and formation mechanisms of a wide variety of aquo/hydroxo oligomeric beryllium clusters were investigated using density functional theory. The structural parameters of beryllium clusters were found to vary regularly with the stepwise substitution of bound water molecules in the inner coordination sphere by hydroxyl groups. According to the Gibbs free energies deduced from SMD solvation model computations, unhydrolyzed oligomeric beryllium species are the most favorable products of polymerization, independent of the degrees of hydrolysis of the reactants. Simulation of the formation processes of oligomeric beryllium showed that polymerization, in essence, involves the nucleophilic attack of a terminal hydroxyl group in one BeO4 tetrahedron on the beryllium center in another BeO4 tetrahedron, leading to the bridging of two BeO4 tetrahedrons by a hydroxyl group.

摘要

利用密度泛函理论研究了多种水合/羟基寡聚铍簇的结构和形成机制。发现铍簇的结构参数会随着内配位球中结合水分子被羟基逐步取代而有规律地变化。根据SMD溶剂化模型计算推导的吉布斯自由能,未水解的寡聚铍物种是聚合反应最有利的产物,与反应物的水解程度无关。寡聚铍形成过程的模拟表明,聚合本质上涉及一个BeO4四面体中末端羟基对另一个BeO4四面体中铍中心的亲核攻击,导致两个BeO4四面体通过一个羟基桥连。

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