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基于氢键机理的乙酸缔合理论研究

Theoretical Study of Acetic Acid Association Based on Hydrogen Bonding Mechanism.

作者信息

Zhang Minhua, Chen Lihang, Yang Huaming, Ma Jing

机构信息

Key Laboratory for Green Chemical Technology of Ministry of Education, R&D Center for Petrochemical Technology and ‡Collaborative Innovation Center of Chemical Science and Engineering, Tianjin University , Tianjin 300072, China.

出版信息

J Phys Chem A. 2017 Jun 15;121(23):4560-4568. doi: 10.1021/acs.jpca.7b03324. Epub 2017 Jun 5.

Abstract

Combining molecular dynamics (MD) and quantum chemistry (QM) simulation, the association mechanisms of acetic acid (AA) systems were examined. DFT methods were proposed to compare the hydrogen-bonding energies of variable acetic acid dimers and definitely provided the stable dimers configuration. Geometry parameters of dimers were also obtained by QM calculations, which were taken as the characteristic criteria for further MD analysis. Proportion of different acetic acid dimers in gas phase was obtained by Radial distribution function (RDF) analysis, and cyclic dimer with two O1-Ho hydrogen bonds was demonstrated as the most stable structure. While in the more complex liquid phase, the linear chain form was proved to be the most stable one. Furthermore, in the acetic acid-crotonaldehyde solution, the association configuration of acetic acid changed from the linear chain form to the cyclic dimer structure as the acetic acid concentration decreased gradually. This result would be significant for the chemical separation process of acetic acid-crotonaldehyde solutions.

摘要

结合分子动力学(MD)和量子化学(QM)模拟,研究了乙酸(AA)体系的缔合机制。提出了密度泛函理论(DFT)方法来比较不同乙酸二聚体的氢键能,并确定提供稳定的二聚体构型。二聚体的几何参数也通过量子力学计算获得,这些参数被用作进一步分子动力学分析的特征标准。通过径向分布函数(RDF)分析得到了气相中不同乙酸二聚体的比例,具有两个O1-Ho氢键的环状二聚体被证明是最稳定的结构。而在更复杂的液相中,线性链状形式被证明是最稳定的。此外,在乙酸-巴豆醛溶液中,随着乙酸浓度逐渐降低,乙酸的缔合构型从线性链状形式转变为环状二聚体结构。这一结果对于乙酸-巴豆醛溶液的化学分离过程具有重要意义。

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