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杂原子双金属协同催化合成杂芳烃。

Hetero-bimetallic cooperative catalysis for the synthesis of heteroarenes.

机构信息

Department of Chemistry, Institute of Chemical Technology, Nathalal Parekh Road, Matunga, Mumbai-400019, India.

Former Research Fellow, Medicinal and Process Chemistry Division, CSIR-Central Drug Research Institute, Lucknow-226031, India.

出版信息

Org Biomol Chem. 2019 Sep 7;17(33):7596-7631. doi: 10.1039/c9ob01152h. Epub 2019 Jun 26.

Abstract

Multi-metallic cooperative catalysis has gained a lot of interest in organic synthesis over the past few years exploring various organic transformations. Of all the myriad chemical transformations, multi-metallic cooperative catalysis offers exceptional chemo-, stereo- and regio-selectivities. In recent years, hetero-multi-metallic catalysis has not only been used to synthesise only simpler organic molecules but rather more complex molecules like heteroarenes which include a variety of commercially important molecules. The current review, in this context, emphasises the synthesis of 5- and 6-membered as well as condensed heteroarenes, covering the literature over the last decade. The discussion focusses on the combinations in cooperative catalytic systems in strategies used to achieve selectivity and also highlights the mode of action for the cooperative catalysis leading to the synthesis of a few commercially and biologically relevant heteroarenes. Finally, the review concludes with a brief outlook on the future scope and opportunities in the field of cooperative catalyses and their prospects for providing state-of-the-art solutions for synthetically challenging organic transformations.

摘要

多金属协同催化在过去几年的有机合成中引起了广泛关注,探索了各种有机转化。在所有无数的化学转化中,多金属协同催化提供了非凡的化学选择性、立体选择性和区域选择性。近年来,杂多金属催化不仅被用于合成简单的有机分子,而且还用于合成更复杂的分子,如包括各种商业上重要的分子的杂芳烃。在这种情况下,当前的综述强调了 5-和 6-元以及稠合杂芳烃的合成,涵盖了过去十年的文献。讨论集中在协同催化体系中的组合,以及用于实现选择性的策略,并强调了协同催化的作用模式,导致了一些商业上和生物学上相关的杂芳烃的合成。最后,综述简要展望了协同催化领域的未来范围和机遇,以及它们为具有挑战性的有机转化提供最先进的解决方案的前景。

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