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室温离子液体中极性和溶剂化的荧光探针研究:综述。

Fluorescent probe studies of polarity and solvation within room temperature ionic liquids: a review.

机构信息

Department of Chemistry, University of Missouri-Columbia, Columbia, MO 65211, USA.

出版信息

J Fluoresc. 2012 Sep;22(5):1313-43. doi: 10.1007/s10895-012-1073-x. Epub 2012 Jun 19.

Abstract

Ionic liquids display an array of useful and sometimes unconventional, solvent features and have attracted considerable interest in the field of green chemistry for the potential they hold to significantly reduce environmental emissions. Some of these points have a bearing on the chemical reactivity of these systems and have also generated interest in the physical and theoretical aspects of solvation in ionic liquids. This review presents an introduction to the field of ionic liquids, followed by discussion of investigations into the solvation properties of neat ionic liquids or mixed systems including ionic liquids as a major or minor component. The ionic liquid based multicomponent systems discussed are composed of other solvents, other ionic liquids, carbon dioxide, surfactants or surfactant solutions. Although we clearly focus on fluorescence spectroscopy as a tool to illuminate ionic liquid systems, the issues discussed herein are of general relevance to discussions of polarity and solvent effects in ionic liquids. Transient solvation measurements carried out by means of time-resolved fluorescence measurements are particularly powerful for their ability to parameterize the kinetics of the solvation process in ionic liquids and are discussed as well.

摘要

离子液体具有一系列有用的、有时甚至是非传统的溶剂特性,它们在绿色化学领域引起了相当大的兴趣,因为它们有可能显著减少环境排放。其中一些特性与这些体系的化学反应性有关,也引起了人们对离子液体中溶剂化的物理和理论方面的兴趣。本综述介绍了离子液体领域,然后讨论了对纯离子液体或混合体系(包括作为主要或次要成分的离子液体)的溶剂化性质的研究。所讨论的基于离子液体的多组分体系由其他溶剂、其他离子液体、二氧化碳、表面活性剂或表面活性剂溶液组成。尽管我们明确将荧光光谱作为一种工具来阐明离子液体体系,但本文所讨论的问题对于讨论离子液体中的极性和溶剂效应具有普遍意义。通过时间分辨荧光测量进行的瞬态溶剂化测量因其能够参数化离子液体中溶剂化过程的动力学而具有特别强大的功能,也进行了讨论。

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