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N-甲基甲酰胺-水二元混合物的量子团簇平衡模型

Quantum cluster equilibrium model of N-methylformamide-water binary mixtures.

作者信息

von Domaros Michael, Jähnigen Sascha, Friedrich Joachim, Kirchner Barbara

机构信息

Mulliken Center for Theoretical Chemistry, Universität Bonn, Beringstr. 4, D-53115 Bonn, Germany.

Martin-Luther-Universität Halle-Wittenberg, von-Danckelmann-Platz 4, D-06120 Halle, Germany.

出版信息

J Chem Phys. 2016 Feb 14;144(6):064305. doi: 10.1063/1.4941278.

Abstract

The established quantum cluster equilibrium (QCE) approach is refined and applied to N-methylformamide (NMF) and its aqueous solution. The QCE method is split into two iterative cycles: one which converges to the liquid phase solution of the QCE equations and another which yields the gas phase. By comparing Gibbs energies, the thermodynamically stable phase at a given temperature and pressure is then chosen. The new methodology avoids metastable solutions and allows a different treatment of the mean-field interactions within the gas and liquid phases. These changes are of crucial importance for the treatment of binary mixtures. For the first time in a QCE study, the cis-trans-isomerism of a species (NMF) is explicitly considered. Cluster geometries and frequencies are calculated using density functional theory (DFT) and complementary coupled cluster single point energies are used to benchmark the DFT results. Independent of the selected quantum-chemical method, a large set of clusters is required for an accurate thermodynamic description of the binary mixture. The liquid phase of neat NMF is found to be dominated by the cyclic trans-NMF pentamer, which can be interpreted as a linear trimer that is stabilized by explicit solvation of two further NMF molecules. This cluster reflects the known hydrogen bond network preferences of neat NMF.

摘要

已建立的量子团簇平衡(QCE)方法得到改进,并应用于N-甲基甲酰胺(NMF)及其水溶液。QCE方法分为两个迭代循环:一个收敛到QCE方程的液相解,另一个产生气相解。通过比较吉布斯自由能,然后选择给定温度和压力下的热力学稳定相。新方法避免了亚稳解,并允许对气相和液相中的平均场相互作用进行不同的处理。这些变化对于二元混合物的处理至关重要。在QCE研究中首次明确考虑了一种物质(NMF)的顺反异构现象。使用密度泛函理论(DFT)计算团簇几何结构和频率,并使用互补耦合簇单点能量对DFT结果进行基准测试。无论选择何种量子化学方法,准确描述二元混合物的热力学性质都需要大量的团簇。发现纯NMF的液相主要由环状反式NMF五聚体主导,这可以解释为一个线性三聚体,通过另外两个NMF分子的明确溶剂化作用而稳定。该团簇反映了纯NMF已知的氢键网络偏好。

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