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氢键辅助超分子金属催化。

Hydrogen-Bonding-Assisted Supramolecular Metal Catalysis.

机构信息

Polymer Science and Engineering Division, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune-, 411008, India.

Academy of Scientific and Innovative Research (AcSIR), Anusandhan Bhawan, 2 Rafi Marg, New Delhi-, 110001, India.

出版信息

Chem Asian J. 2018 Dec 4;13(23):3623-3646. doi: 10.1002/asia.201801302. Epub 2018 Nov 20.

Abstract

The process of catalyst screening and discovery still largely relies on traditional ligand-design approaches, which suffer from complex synthetic requirements and offer limited structural diversity. On the contrary, supramolecular chemistry offers the potential to harness multiple weak secondary interactions to deliver self-assembled catalysts with diverse structures or to orient substrates to achieve enzyme-like activity and selectivity. Herein, the application of hydrogen-bonding (H-bonding) interactions as a construction element and directing group in "supramolecular transition-metal catalysis" is critically reviewed and the current state-of-the-art in the field is presented. H-bonding interactions empower structurally simple ligands to deliver complex self-assembled catalysts, which have been found to catalyze a gamut of organic transformations, including hydroformylation, hydrogenation, and allylation reactions. As we will discuss, on many occasions, these supramolecular catalysts outperform their analogous covalently linked catalytic systems. The potential of H-bonding interactions as directing groups has recently been recognized by the scientific community and this Focus Review presents the role of hydrogen-bonding interactions in directing substrates to obtain excellent selectivities and activities in a range of catalytic transformations.

摘要

催化剂的筛选和发现过程仍然在很大程度上依赖于传统的配体设计方法,这些方法受到复杂的合成要求的限制,并且提供的结构多样性有限。相比之下,超分子化学具有利用多种弱次级相互作用来提供具有多种结构的自组装催化剂或使底物定向以实现类似酶的活性和选择性的潜力。本文批判性地综述了氢键(H 键)相互作用作为“超分子过渡金属催化”中的构建元件和导向基团的应用,并介绍了该领域的最新现状。氢键相互作用使结构简单的配体能够提供复杂的自组装催化剂,这些催化剂已被发现能够催化多种有机转化,包括氢甲酰化、加氢和烯丙基化反应。正如我们将讨论的那样,在许多情况下,这些超分子催化剂的性能优于其类似的共价连接的催化体系。氢键相互作用作为导向基团的潜力最近已被科学界所认识,本重点综述介绍了氢键相互作用在指导底物以获得一系列催化转化中优异的选择性和活性方面的作用。

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