了解 1,3-二取代咪唑鎓聚集体中的结构、氢键和氢转移:密度泛函理论研究

IF 1.4 4区 化学 Q4 CHEMISTRY, PHYSICAL
Jingwen Zhou, Xiuliang Sun, Tianpeng Chen, Shuai Xu, Chongpin Huang, Jianwei Li
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引用次数: 0

摘要

利用密度泛函理论 B3LYP 和 D3 弥散校正,研究了 1-丁基-3-甲基氢氧化咪唑鎓([Bmim]OH)聚集体(包括碳烯(α)和共价(β)构象的二聚体和三聚体)的结构、氢键和氢转移。计算了[Bmim]OH 复合物构象聚集体的几何参数、在气相和溶液相中形成的吉布斯自由能。通过分子中原子描述符量子理论预测了不同类型 H 键的强度和结合能。结果表明,[Bmim]OH 聚集体中大多数羟基质子与碳环(C2)的碳原子之间形成了 O-H-C 氢键。此外,我们还考察了质子在[Bmim]OH的二聚体和三聚体构象中的转移,研究了质子从β构象的羟基转移到碳环的反应途径,质子转移过程在能量上是有利的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Understanding Structure, Hydrogen Bonding, and Hydrogen Transfer in 1,3-Disubstituted Imidazolium Aggregations: A Density Functional Theory Study

Understanding Structure, Hydrogen Bonding, and Hydrogen Transfer in 1,3-Disubstituted Imidazolium Aggregations: A Density Functional Theory Study

The structure, hydrogen bonding, and hydrogen transfer of 1-butyl-3-methylimidazolium hydroxide ([Bmim]OH) aggregations, including dimer and trimer of carbene(α) and covalent(β) conformation, have been investigated using density functional theory B3LYP together with D3 dispersion correction. The geometrical parameters, Gibbs free energy of formation in gas and solution phases were calculated for aggregates of the complex [Bmim]OH conformation. The strengths and binding energies of different types of H-bonds were predicted by quantum theory of atoms-in-molecules descriptors. The results show that O–H···C hydrogen bonds were formed between most hydroxyl protons and the carbon atom of the carbene ring (C2) in [Bmim]OH aggregations. Furthermore, we examine the proton transfer in dimer and trimer conformation of [Bmim]OH, the reaction pathway for proton transfer from hydroxyl of β-conformer to carbene ring was investigated, and the proton transfer process is energetically favorable.

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来源期刊
Journal of Solution Chemistry
Journal of Solution Chemistry 化学-物理化学
CiteScore
2.30
自引率
0.00%
发文量
87
审稿时长
3-8 weeks
期刊介绍: Journal of Solution Chemistry offers a forum for research on the physical chemistry of liquid solutions in such fields as physical chemistry, chemical physics, molecular biology, statistical mechanics, biochemistry, and biophysics. The emphasis is on papers in which the solvent plays a dominant rather than incidental role. Featured topics include experimental investigations of the dielectric, spectroscopic, thermodynamic, transport, or relaxation properties of both electrolytes and nonelectrolytes in liquid solutions.
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