离子液体
催化作用
苯并咪唑
化学
共价键
部分
离子键合
共价有机骨架
化学工程
溶剂
多孔性
有机化学
离子
工程类
作者
Qianqian Yan,Liang Hao,Shenglin Wang,Hui Hu,Xiaofang Su,Songtao Xiao,Huanjun Xu,Xuechao Jing,Fei Lü,Yanan Gao
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2022-09-21
卷期号:27 (19): 6204-6204
被引量:24
标识
DOI:10.3390/molecules27196204
摘要
Transforming CO2 into value-added chemicals has been an important subject in recent years. The development of a novel heterogeneous catalyst for highly effective CO2 conversion still remains a great challenge. As an emerging class of porous organic polymers, covalent organic frameworks (COFs) have exhibited superior potential as catalysts for various chemical reactions, due to their unique structure and properties. In this study, a layered two-dimensional (2D) COF, IM4F-Py-COF, was prepared through a three-component condensation reaction. Benzimidazole moiety, as an ionic liquid precursor, was integrated onto the skeleton of the COF using a benzimidazole-containing building unit. Ionization of the benzimidazole framework was then achieved through quaternization with 1-bromobutane to produce an ionic liquid-immobilized COF, i.e., BMIM4F-Py-COF. The resulting ionic COF shows excellent catalytic activity in promoting the chemical fixation of CO2 via reaction with epoxides under solvent-free and co-catalyst-free conditions. High porosity, the one-dimensional (1D) open-channel structure of the COF and the high catalytic activity of ionic liquid may contribute to the excellent catalytic performance. Moreover, the COF catalyst could be reused at least five times without significant loss of its catalytic activity.
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