Faculty of Chemistry (Organic Chemistry) and Center for Nanointegration Duisburg-Essen (CENIDE), University of Duisburg-Essen, Universitätsstr. 7, 45141, Essen, Germany.
Chempluschem. 2020 May;85(5):889-899. doi: 10.1002/cplu.202000152.
Supramolecular organocatalysis has emerged as a novel research field in the context of homogeneous catalysis. In particular, the use of functionalized macrocycles as supramolecular catalysts is highly promising, as these systems are oftentimes easily accessible and offer distinct advantages in catalysis. Macrocyclic catalysts can provide defined binding pockets, such as hydrophobic cavities, and can thus create a reaction microenvironment for catalysis. In addition, macrocycles can offer a preorganized arrangement of functional groups, such as binding sites or catalytically active groups, thus enabling a defined and possibly multivalent binding and activation of substrates. The aim of this Minireview is to provide an overview of recent advances in the area of supramolecular organocatalysis based on functionalized macrocycles (including cyclodextrins, calixarenes, and resorcinarenes), with a focus on those examples where certain catalytically active groups (such as hydrogen bond donors/acceptors, Brønsted acid or base groups, or nucleophilic units) are present in or have been installed on the macrocycles.
超分子有机催化在均相催化的背景下已经成为一个新兴的研究领域。特别是,功能化大环作为超分子催化剂具有很大的应用前景,因为这些体系通常易于获得,并在催化中具有明显的优势。大环催化剂可以提供明确的结合口袋,例如疏水性空腔,从而为催化创造一个反应微环境。此外,大环可以提供功能基团的预组织排列,例如结合位点或催化活性基团,从而能够对底物进行明确且可能多价的结合和激活。本文综述的目的是概述基于功能化大环(包括环糊精、杯芳烃和杯芳烃)的超分子有机催化的最新进展,重点介绍那些在大环中存在或已安装某些催化活性基团(如氢键供体/受体、布朗斯台德酸或碱基团或亲核单元)的例子。