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Confinement Effects in Catalysis Using Well-Defined Materials and Cages

机译:定义明确的材料和笼子在催化中的限制作用

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摘要

This review focuses on the effects that confinement of molecular and heterogeneous catalysts with well-defined structure has on the selectivity and activity of these systems. A general introduction about catalysis and how the working principles of enzymes can be used as a source of inspiration for the preparation of catalysts with enhanced performance is provided. Subsequently, relevant studies demonstrate the importance of second coordination sphere effects in a broad sense (in homogeneous and heterogeneous catalysis). Firstly, we discuss examples involving zeolites, MOFs and COFs as heterogeneous catalysts with well-defined structures where confinement influences catalytic performance. Then, specific cases of homogeneous catalysts where non-covalent interactions determine the selectivity and activity are treated in detail. This includes examples based on cyclodextrins, calix[n]arenes, cucurbit[n]urils, and self-assembled container molecules. Throughout the review, the impact of confined spaces is emphasized and put into context, in order to get a better understanding of the effects of confinement on catalyst performance. In addition, this analysis intends to showcase the similarities between homogeneous and heterogeneous catalysts, which may aid the development of novel strategies.
机译:这篇综述着重于限制具有明确结构的分子催化剂和非均相催化剂对这些系统的选择性和活性的影响。提供了有关催化的概述,以及如何将酶的工作原理用作制备具有增强性能的催化剂的灵感来源。随后,相关研究从广义上证明了第二配位域效应的重要性(均相和非均相催化)。首先,我们讨论了一些例子,其中涉及沸石,MOF和COF作为具有明确结构的非均相催化剂,其中限制条件影响催化性能。然后,详细讨论了非共价相互作用决定选择性和活性的均相催化剂的特殊情况。这包括基于环糊精,杯芳烃,葫芦丝和自组装容器分子的例子。在整个审查过程中,强调并限制了空间的影响,以便更好地了解限制对催化剂性能的影响。另外,该分析旨在展示均相和非均相催化剂之间的相似性,这可能有助于开发新的策略。

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