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ZnCl-乙醇混合物的结构,光谱和量子化学计算研究。

The Structures of ZnCl-Ethanol Mixtures, a Spectroscopic and Quantum Chemical Calculation Study.

机构信息

MOE Key Laboratory of Bioorganic Phosphorous Chemistry and Chemical Biology, Department of Chemistry, Tsinghua University, Beijing 100084, China.

出版信息

Molecules. 2021 Apr 25;26(9):2498. doi: 10.3390/molecules26092498.

Abstract

We report in this article the structural properties, spectral behavior and heterogeneity of ZnCl-ethanol (EtOH) mixtures in a wide-composition range (1:3 to 1:14 in molar ratios), using ATR-FTIR spectroscopy and quantum chemical calculations. To improve the resolution of the initial IR spectra, excess spectroscopy and two-dimensional correlation spectroscopy were employed. The transformation process was suggested to be from EtOH trimer and EtOH tetramer to EtOH monomer, EtOH dimer and ZnCl-3EtOH complex upon mixing. The theoretical findings showed that increasing the content of EtOH was accompanied with the flow of negative charge to ZnCl. This led to reinforcement of the ZnO coordination bonds, increase of the ionic character of Zn‒Cl bond and weakening and even dissociation of the Zn‒Cl bond. It was found that in some of the ZnCl-EtOH complexes optimized at the gas phase or under the solvent effect, there existed hydroxyls with a very special interactive array in the form of Cl‒ZnO‒HCl, which incredibly red-shifted to wavenumbers <3000 cm. This in-depth study shows the physical insights of the respective electrolyte alcoholic solutions, particularly the solvation process of the salt, help to rationalize the reported experimental results, and may shed light on understanding the properties of the deep eutectic solvents formed from ZnCl and an alcohol.

摘要

本文使用衰减全反射傅里叶变换红外光谱(ATR-FTIR)和量子化学计算研究了 ZnCl-乙醇(EtOH)混合物在宽组成范围内(摩尔比为 1:3 至 1:14)的结构性质、光谱行为和不均匀性。为了提高初始红外光谱的分辨率,采用了过量光谱和二维相关光谱。混合过程被建议从 EtOH 三聚体和 EtOH 四聚体转变为 EtOH 单体、EtOH 二聚体和 ZnCl-3EtOH 配合物。理论研究表明,随着 EtOH 含量的增加,负电荷流向 ZnCl。这导致 ZnO 配位键增强,Zn‒Cl 键的离子特性增加,Zn‒Cl 键减弱甚至解离。发现一些在气相或溶剂效应下优化的 ZnCl-EtOH 配合物中,存在以 Cl‒ZnO‒HCl 形式非常特殊的相互作用排列的羟基,其波数不可思议地红移到<3000 cm。这项深入研究展示了各自电解质醇溶液的物理洞察力,特别是盐的溶剂化过程,有助于合理化报道的实验结果,并可能有助于理解由 ZnCl 和醇形成的深共晶溶剂的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afb2/8123294/ae474aac5b0a/molecules-26-02498-g001.jpg

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