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预测盐形成焓的新方法。

New Method for Predicting the Enthalpy of Salt Formation.

作者信息

Khakimov Dmitry V, Pivina Tatyana S

机构信息

N. D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 119991 Moscow, Russian Federation.

出版信息

J Phys Chem A. 2022 Aug 11;126(31):5207-5214. doi: 10.1021/acs.jpca.2c01114. Epub 2022 Jul 29.

Abstract

A new efficient method for calculating the enthalpies of salt formation is proposed. The method is based on a fundamentally new cocrystal model, consisting of a mixture of cations and anions and a "quasi-salt" of neutral components, in fact, of the salt itself, and the enthalpy of formation is calculated as the average value between the enthalpies of formation of these two structural components. Unlike correlation and additive schemes, this method is based on the construction of a real physical model of a salt crystal, for which the molecular geometry of the ions and neutral salt components is preliminarily optimized by quantum chemistry methods. Further, based on the obtained data, the initial models of crystal lattices in the statistically most probable structural classes are constructed with their subsequent optimization by the method of Atom-Atom potentials. For a number of compounds of various chemical classes, the effectiveness of the method for estimating the enthalpy of salts is shown, which surpasses the known methods in terms of calculation accuracy.

摘要

提出了一种计算盐形成焓的新的有效方法。该方法基于一种全新的共晶模型,该模型由阳离子和阴离子的混合物以及中性成分的“准盐”(实际上就是盐本身)组成,形成焓被计算为这两种结构成分形成焓的平均值。与相关和加和方案不同,该方法基于盐晶体真实物理模型的构建,为此通过量子化学方法预先优化离子和中性盐成分的分子几何结构。此外,基于所得数据,构建统计上最可能结构类别的晶格初始模型,随后通过原子 - 原子势方法对其进行优化。对于多种化学类别的一些化合物,展示了该方法估算盐焓的有效性,在计算精度方面超过了已知方法。

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