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三环氧和四环氧咪唑鎓离子液体对一氧化碳物理和化学吸收的理论分析

Theoretical Analysis of Physical and Chemical CO Absorption by Tri- and Tetraepoxidized Imidazolium Ionic Liquids.

作者信息

Wylie Luke, Perli Gabriel, Avila Jocasta, Livi Sebastien, Duchet-Rumeau Jannick, Costa Gomes Margarida, Padua Agilio

机构信息

Laboratoire de Chimie, Ecole Normale Supérieure de Lyon, CNRS, Lyon 69342, France.

Université de Lyon, CNRS, UMR 5223, Ingénierie des Matériaux Polymères, INSA Lyon, Villeurbanne F-69621, France.

出版信息

J Phys Chem B. 2022 Dec 1;126(47):9901-9910. doi: 10.1021/acs.jpcb.2c06630. Epub 2022 Nov 16.

Abstract

The efficient capture of CO from flue gas or directly from the atmosphere is a key subject to mitigate global warming, with several chemical and physical absorption methods previously reported. Through polarizable molecular dynamics (MD) simulations and high-level quantum chemical (QC) calculations, the physical and chemical absorption of CO by ionic liquids based on imidazolium cations bearing oxirane groups was investigated. The ability of the imidazolium group to absorb CO was found to be prevalent in both the tri- and tetraepoxidized imidazolium ionic liquids (ILs) with coordination numbers over 2 for CO within the first solvation shell in both systems. Thermodynamic analysis of the addition of CO to convert epoxy groups to cyclic carbonates also indicated that the overall reaction is exergonic for all systems tested, allowing for chemical absorption of CO to also be favored. The rate-determining step of the chemical absorption involved the initial opening of the epoxy ring through addition of the chloride anion and was seen to vary greatly between the epoxy groups tested. Among the groups tested, the less sterically hindered monoepoxy side of the triepoxidized imidazolium was shown to be uniquely capable of undergoing intramolecular hydrogen bonding and thus lowering the barrier required for the intermediate structure to form during the reaction. Overall, this theoretical investigation highlights the potential for epoxidized imidazolium chloride ionic liquids for simultaneous chemical and physical absorption of CO.

摘要

从烟道气中或直接从大气中高效捕获一氧化碳是缓解全球变暖的关键课题,此前已有多种化学和物理吸收方法被报道。通过极化分子动力学(MD)模拟和高水平量子化学(QC)计算,研究了基于带有环氧乙烷基团的咪唑阳离子的离子液体对一氧化碳的物理和化学吸收。在这两个体系中,发现咪唑基团吸收一氧化碳的能力在三环氧和四环氧咪唑离子液体(ILs)中普遍存在,在第一个溶剂化壳层中一氧化碳的配位数超过2。对一氧化碳加成以将环氧基团转化为环状碳酸酯的热力学分析也表明,对于所有测试体系,总体反应都是放能的,这也有利于一氧化碳的化学吸收。化学吸收的速率决定步骤涉及通过添加氯离子使环氧环初始开环,并且在所测试的环氧基团之间差异很大。在所测试的基团中,三环氧咪唑的空间位阻较小的单环氧侧被证明具有独特的能力进行分子内氢键形成,从而降低反应过程中形成中间结构所需的势垒。总体而言,这项理论研究突出了氯化环氧咪唑离子液体同时进行一氧化碳化学和物理吸收的潜力。

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