Metal–Organic Cages: Applications in Organic Reactions

Supramolecular metal–organic cages, a class of molecular containers formed via coordination-driven self-assembly, have attracted sustained attention for their applications in catalysis, due to their structural aesthetics and unique properties. Their inherent confined cavity is considered to be analo...

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Published in:Chemistry
Main Authors: Shangjun Chen, Li-Jun Chen
Format: Article
Language:English
Published: MDPI AG 2022-05-01
Subjects:
Online Access:https://www.mdpi.com/2624-8549/4/2/36
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author Shangjun Chen
Li-Jun Chen
author_facet Shangjun Chen
Li-Jun Chen
author_sort Shangjun Chen
collection DOAJ
container_title Chemistry
description Supramolecular metal–organic cages, a class of molecular containers formed via coordination-driven self-assembly, have attracted sustained attention for their applications in catalysis, due to their structural aesthetics and unique properties. Their inherent confined cavity is considered to be analogous to the binding pocket of enzymes, and the facile tunability of building blocks offers a diverse platform for enzyme mimics to promote organic reactions. This minireview covers the recent progress of supramolecular metal–organic coordination cages for boosting organic reactions as reaction vessels or catalysts. The developments in the utilizations of the metal–organic cages for accelerating the organic reactions, improving the selectivity of the reactions are summarized. In addition, recent developments and successes in tandem or cascade reactions promoted by supramolecular metal–organic cages are discussed.
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spelling doaj-art-e5a9d99a5d284e9da9237d7cb252b59a2025-08-19T22:33:50ZengMDPI AGChemistry2624-85492022-05-014249451910.3390/chemistry4020036Metal–Organic Cages: Applications in Organic ReactionsShangjun Chen0Li-Jun Chen1Key Laboratory of Resource Chemistry of Ministry of Education, Shanghai Key Laboratory of Rare Earth Functional Materials, Department of Chemistry, Shanghai Normal University, Shanghai 200234, ChinaAustralian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, AustraliaSupramolecular metal–organic cages, a class of molecular containers formed via coordination-driven self-assembly, have attracted sustained attention for their applications in catalysis, due to their structural aesthetics and unique properties. Their inherent confined cavity is considered to be analogous to the binding pocket of enzymes, and the facile tunability of building blocks offers a diverse platform for enzyme mimics to promote organic reactions. This minireview covers the recent progress of supramolecular metal–organic coordination cages for boosting organic reactions as reaction vessels or catalysts. The developments in the utilizations of the metal–organic cages for accelerating the organic reactions, improving the selectivity of the reactions are summarized. In addition, recent developments and successes in tandem or cascade reactions promoted by supramolecular metal–organic cages are discussed.https://www.mdpi.com/2624-8549/4/2/36catalysisgreen chemistrymetal–organic cagesorganic reactionssupramolecular chemistrytandem reactions
spellingShingle Shangjun Chen
Li-Jun Chen
Metal–Organic Cages: Applications in Organic Reactions
catalysis
green chemistry
metal–organic cages
organic reactions
supramolecular chemistry
tandem reactions
title Metal–Organic Cages: Applications in Organic Reactions
title_full Metal–Organic Cages: Applications in Organic Reactions
title_fullStr Metal–Organic Cages: Applications in Organic Reactions
title_full_unstemmed Metal–Organic Cages: Applications in Organic Reactions
title_short Metal–Organic Cages: Applications in Organic Reactions
title_sort metal organic cages applications in organic reactions
topic catalysis
green chemistry
metal–organic cages
organic reactions
supramolecular chemistry
tandem reactions
url https://www.mdpi.com/2624-8549/4/2/36
work_keys_str_mv AT shangjunchen metalorganiccagesapplicationsinorganicreactions
AT lijunchen metalorganiccagesapplicationsinorganicreactions