用量子力学/分子力学方法研究溶液中分子极化的理论研究:与可极化连续体模型的比较

Hideaki Takahashi, M. Kitaura, R. Kishi, Suguru Ohta, Rika Okaji, S. Furukawa, M. Nakano
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引用次数: 1

摘要

我们通过QM/MM模拟和极化连续体模型计算了甲醛和乙烯在水溶液中的静态极化率,以检验极化率对纳入溶剂效应的方法的依赖性。用QM/MM方法模拟的溶剂几乎没有改变甲醛和乙烯的极化率。结果与其他理论研究的结论基本一致,即线性氢键链中单体的极化率不因氢键的增加而增加。与QM/MM方法相比,两种方法都表明σ电子对介电介质的极化率起主要作用,但结果表明,嵌入在介质中的溶质的极化率明显增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Study on the Polarizabilities of Molecules in Solution by the Quantum Mechanical/Molecular Mechanical Approach: Comparison with the Polarizable Continuum Model
We compute the static polarizabilities of formaldehyde and ethylene in water solution by means of the QM/MM simulations and the polarizable continuum model for the purpose to examine the dependence of the polarizability on the method to include solvent effects. It is found that the polarizability of formaldehyde as well as ethylene is hardly changed by the solvent modeled by QM/MM approach. The results are reasonably consistent with suggestions given by other theoretical investigations which revealed that polarizabilities of a monomer in the linear hydrogen bonded chain is not increased by the hydrogen bondings. In contrast to the QM/MM method, it turns out that the polarizabilities are clearly enhanced for the solutes embedded in the dielectric continuums though both methods indicate that the σ electrons dominantly contribute to the polarizability.
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