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负载型酸性离子液体在有机合成中的应用。

The use of supported acidic ionic liquids in organic synthesis.

作者信息

Skoda-Földes Rita

机构信息

University of Pannonia, Institute of Chemistry, Department of Organic Chemistry, P. O. Box 158, Veszprém H-8201, Hungary.

出版信息

Molecules. 2014 Jun 26;19(7):8840-84. doi: 10.3390/molecules19078840.

Abstract

Catalysts obtained by the immobilisation of acidic ionic liquids (ILs) on solid supports offer several advantages compared to the use of catalytically active ILs themselves. Immobilisation may result in an increase in the number of accessible active sites of the catalyst and a reduction of the amount of the IL required. The ionic liquid films on the carrier surfaces provide a homogeneous environment for catalytic reactions but the catalyst appears macroscopically as a dry solid, so it can simply be separated from the reaction mixture. As another advantage, it can easily be applied in a continuous fixed bed reactor. In the present review the main synthetic strategies towards the preparation of supported Lewis acidic and Brønsted acidic ILs are summarised. The most important characterisation methods and structural features of the supported ionic liquids are presented. Their efficiency in catalytic reactions is discussed with special emphasis on their recyclability.

摘要

通过将酸性离子液体(ILs)固定在固体载体上获得的催化剂与使用具有催化活性的离子液体本身相比具有若干优势。固定化可能会增加催化剂可及活性位点的数量,并减少所需离子液体的用量。载体表面的离子液体膜为催化反应提供了均匀的环境,但催化剂在宏观上表现为干燥的固体,因此可以很容易地从反应混合物中分离出来。另一个优点是,它可以很容易地应用于连续固定床反应器中。在本综述中,总结了制备负载型路易斯酸性和布朗斯特酸性离子液体的主要合成策略。介绍了负载型离子液体最重要的表征方法和结构特征。讨论了它们在催化反应中的效率,特别强调了它们的可回收性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47db/6271805/305fe28441e0/molecules-19-08840-g001.jpg

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