离子液体在绿色催化中的应用综述

A. Sarkar, S. Pandey
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引用次数: 0

摘要

离子液体(ILs)在工业和学术界的不同领域已成为传统挥发性有机化合物(VOCs)的潜在“绿色”替代品。最近对离子液体多方面应用发展的研究表明,就其对生态的影响而言,它们确实代表了“环境友好”的溶剂。这使得它们成为一个令人兴奋和有利可图的主题,越来越多地进行探索,许多研究小组都参与了它们固有的未公开遗产的表现。最近,由于传统金属催化剂会引起污染,学术界和工业界都在大力寻找替代金属催化剂的方法。科学家们已经探索了多种含有离子液体的均相或非均相催化剂混合物,以减少由于催化合成和化学转化而产生的对我们全球环境的污染程度。在这篇综述中,我们把我们的注意力集中在一些有益的和最近探索的方面,在催化的几个领域中,不同形式的离子液体作为一种“绿色”替代催化剂/助催化剂/溶剂,以取代或尽量减少金属和金属化合物作为催化剂以及化学物质如矿物酸或挥发性有机化合物作为溶剂的危险使用。在这里,我们的研究重点是ILs在几种催化反应中不可避免的作用,如CO2的环加成,CO2的电解还原,生物催化或酶促反应,一些重要的有机转化,以及作为催化剂,助催化剂,催化剂活化剂和溶剂的生物质到生物燃料的转化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of Ionic Liquids in Green Catalysis: A Review of Recent Efforts
Ionic Liquids (ILs) in their neoteric form have emerged to be a potential ‘green’ alternative of traditional Volatile Organic Compounds (VOCs) as solvents in different fields of industries and academia. Recent investigations on the development of multi-faceted applications of ionic liquids have revealed that they really stand for “environmentally-benign” solvents as far as their impact on the ecology is concerned. This caused them to be an exciting and lucrative subject to explore more and more, and many research groups are involved in the manifestation of their inherent undisclosed legacy. Recently, there has been a huge jump in search of an alternative to conventional metal catalysts in academia as well as in industries due to their pollution-evoking roles. Scientists have explored multiple numbers of homogeneous or heterogeneous mixtures of catalysts incorporating ionic liquids to reduce the extent of contamination in our global environment produced due to catalytic synthesis and chemical transformations. In this review, we have put our concentration on some beneficial and recently explored aspects of the successful implementation of Ionic Liquids in different forms in several fields of catalysis as a ‘green’ alternative catalyst/co-catalyst/solvent for catalysis to replace or minimize the lone and hazardous use of metal and metallic compounds as catalysts as well as chemicals like mineral acids or VOCs as solvents. Here, our study focuses on the inevitable role of ILs in several catalytic reactions like cycloaddition of CO2, electrolytic reduction of CO2, biocatalytic or enzymatic reactions, some of the important organic conversions, and biomass to biofuel conversion as catalysts, cocatalysts, catalyst activator, and solvents.
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