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离子液体结构对有机反应的影响。

Ionic liquid structure-induced effects on organic reactions.

作者信息

Stark Annegret

机构信息

Institute for Technical Chemistry and Environmental Chemistry, Friedrich-Schiller University Jena, Lessingstr. 12, 07743, Jena, Germany,

出版信息

Top Curr Chem. 2010;290:41-81. doi: 10.1007/128_2008_43.

Abstract

Understanding the ways in which the constituents of ionic liquids, i.e. the type of cation, its substitution, and the type of anion chosen, interact with reactants is prerequisite to deliberately designing an ionic liquid solvent with optimum performance. Several approaches, including physico-chemical and spectroscopic measurements and computational studies of binary ionic liquid-substrate mixtures have been presented that investigate the strength of interactions.The qualitative order of the basicity (hydrogen bond acceptor potential) of anions as most prominent force is already reasonably well understood, and reliably determined using, e.g. selective solvatochromic dyes. In certain reactions, the relative order of basicity correlates well with the reactivity of substrates. However, the determination of a relative order for the cations is still in its infancy. Owing to the fact that potential cation-derived interactions may not solely be due to hydrogen bond interactions, but also to ion pair interactions (electron pair donor/acceptor properties), the relative magnitudes of interactions between the anion and cation vary considerably - even in the absence of solutes - depending on the experimental method. In addition, it appears that the basicity of the anion superimposes in many instances on the effects exhibited by the cation and/or the cation's substituent. Hence, understanding the effect of the cation on the activation of substrates is still a challenge.This chapter aims at summarising the trends observed for binary model systems in experimental and computational investigations, and drawing conclusions about ionic liquid structure-induced effects relevant to organic reactions, in particular nucleophilic substitution reactions.

摘要

了解离子液体的组成成分(即阳离子的类型、其取代基以及所选择的阴离子的类型)与反应物相互作用的方式,是精心设计具有最佳性能的离子液体溶剂的先决条件。已经提出了几种方法,包括物理化学和光谱测量以及对二元离子液体 - 底物混合物的计算研究,以研究相互作用的强度。作为最主要作用力的阴离子碱性(氢键受体潜力)的定性顺序已经得到了较好的理解,并且可以使用例如选择性溶剂化显色染料可靠地确定。在某些反应中,碱性的相对顺序与底物的反应性密切相关。然而,阳离子相对顺序的确定仍处于起步阶段。由于潜在的阳离子衍生相互作用可能不仅归因于氢键相互作用,还归因于离子对相互作用(电子对供体/受体性质),即使在没有溶质的情况下,阴离子和阳离子之间相互作用的相对大小也会因实验方法的不同而有很大差异。此外,在许多情况下,阴离子的碱性似乎叠加在阳离子和/或阳离子取代基所表现出的效应上。因此,了解阳离子对底物活化的影响仍然是一个挑战。本章旨在总结在实验和计算研究中观察到的二元模型系统的趋势,并得出与有机反应(特别是亲核取代反应)相关的离子液体结构诱导效应的结论。

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