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离子液体中的氮杂环丙烷阴离子:离子液体工具箱中大有可为但尚未充分利用的组成部分。

Azolate Anions in Ionic Liquids: Promising and Under-Utilized Components of the Ionic Liquid Toolbox.

机构信息

Department of Chemistry, McGill University, 801 Sherbrooke St. West, Montreal, QC H3A 0B8, Canada.

College of Arts & Sciences, The University of Alabama, Box 870336, Tuscaloosa, AL, 35487, USA.

出版信息

Chemistry. 2019 Feb 11;25(9):2127-2140. doi: 10.1002/chem.201802957. Epub 2018 Nov 30.

Abstract

Owing to their ease of synthesis, diffuse positive charge, and chemical stability, 1-alkyl-3-methylimidazolium cations (i.e., [C mim] ) are one of the most routinely utilized and historically important components in ionic liquid (IL) chemistry. However, while this is a routinely encountered member of the IL family as cations, relatively few workers have explored the versatile chemistry of azoles to allow their use as an anionic component in ILs, as azolates. Azolate anions possess many of the desired properties for IL formation, including a diffuse ionic charge, tailorable asymmetry, and synthetic flexibility, with the added advantages of not relying on halogen atoms for electron-withdrawing effects, as is commonly encountered with IL anions such as hexafluorophosphate. This review explores the 122 azolate-containing ILs known in the literature (prepared from only 39 disparate azolate anions), with a view to highlighting not only their demonstrated utility as an IL component, but the ways in which the larger scientific community may utilize their advantageous properties for new tailored materials.

摘要

由于其易于合成、正电荷弥散和化学稳定性,1-烷基-3-甲基咪唑阳离子(即[C mim])是离子液体(IL)化学中最常用和历史上最重要的成分之一。然而,虽然这是 IL 家族中作为阳离子经常遇到的成员,但相对较少的工作者探索了唑类化合物的多功能化学性质,以允许它们作为 IL 中的阴离子成分,即唑盐。唑盐阴离子具有许多形成 IL 的理想性质,包括弥散的离子电荷、可定制的不对称性和合成灵活性,并且具有不依赖于卤素原子的电子受主效应的优点,这在 IL 阴离子中是常见的,如六氟磷酸盐。本综述探讨了文献中已知的 122 种含唑盐的 IL(仅由 39 种不同的唑盐阴离子制备),旨在不仅突出它们作为 IL 成分的实际用途,而且还突出了更大的科学界如何利用它们的有利性质来开发新的定制材料。

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