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基于金属盐的深共熔溶剂的分子与光谱学见解:分子中原子的组合量子理论、非共价相互作用及密度泛函理论研究

Molecular and Spectroscopic Insights into a Metal Salt-Based Deep Eutectic Solvent: A Combined Quantum Theory of Atoms in Molecules, Noncovalent Interaction, and Density Functional Theory Study.

作者信息

Mishra Dhirendra Kumar, Gopakumar Gopinadhanpillai, Pugazhenthi Gopal, Siva Brahmmananda Rao Cherukuri Venkata, Nagarajan Sivaraman, Banerjee Tamal

机构信息

Department of Chemical Engineering, Indian Institute of Technology, Guwahati 781039, Assam, India.

Fuel Chemistry Division, Materials Chemistry and Metal Fuel Cycle Group, Indira Gandhi Centre for Atomic Research, Kalpakkam 603102, India.

出版信息

J Phys Chem A. 2021 Nov 11;125(44):9680-9690. doi: 10.1021/acs.jpca.1c07809. Epub 2021 Oct 28.

Abstract

Deep eutectic solvents (DESs) based on metal halide salts are highly catalytic, low toxic, reusable, cost-effective, and have higher thermal stability than their analogue ionic liquids (ILs). In this work, we have reported the formation mechanism of metal salt-based DESs at the molecular level along with their charge-transfer analysis and thermodynamics associated with their formation using density functional theory. The DES systems analyzed in the present work were choline chloride and tin(II)chloride (DES1) and choline chloride and zinc(II)chloride (DES2), both in a molar ratio of 1:2, respectively. An excellent correlation is obtained between the theoretically calculated IR spectra of the DES systems and the previously reported experimental findings for the formation of the complex systems. The DESs were found to be stable systems due to traditional hydrogen bonding and electrostatic interactions resulting in the ionic species [SnCl] and [ZnCl] and are elucidated with the help of electronic structure calculations. CHELPG partial charge analysis and natural bond orbital analysis suggest a charge transfer from Cl (chloride) to Ch (choline) and metal salts in the DES structures. The atom-in-molecules and noncovalent interaction (NCI) analysis suggest a strong electrostatic interaction within the DES2 system as compared to DES1. Higher stability and reactivity are observed in the DES2 system based on the frontier molecular orbital analysis. Our analysis offers important insights into the formation mechanism of these economic IL analogues.

摘要

基于金属卤化物盐的深共熔溶剂(DESs)具有高催化活性、低毒性、可重复使用、成本效益高的特点,并且比其类似物离子液体(ILs)具有更高的热稳定性。在这项工作中,我们利用密度泛函理论报道了基于金属盐的DESs在分子水平上的形成机制,以及它们的电荷转移分析和与形成相关的热力学。本工作中分析的DES系统分别是摩尔比为1:2的氯化胆碱和氯化亚锡(DES1)以及氯化胆碱和氯化锌(DES2)。DES系统的理论计算红外光谱与先前报道的复合系统形成的实验结果之间获得了极好的相关性。由于传统的氢键和静电相互作用导致离子物种[SnCl]和[ZnCl]的形成,DESs被发现是稳定的系统,并通过电子结构计算进行了阐明。CHELPG部分电荷分析和自然键轨道分析表明在DES结构中存在从Cl(氯)到Ch(胆碱)和金属盐的电荷转移。分子中的原子和非共价相互作用(NCI)分析表明,与DES1相比,DES2系统内存在强静电相互作用。基于前线分子轨道分析,在DES2系统中观察到更高的稳定性和反应活性。我们的分析为这些经济的IL类似物的形成机制提供了重要的见解。

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