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金属腔蛋白作为有前景的工业催化剂:最新进展

Metallocavitins as Promising Industrial Catalysts: Recent Advances.

作者信息

Shteinman Albert A

机构信息

Department of Kinetics and Catalysis, Institute of Problems of Chemical Physics, RAN, Chernogolovka, Russia.

出版信息

Front Chem. 2022 Feb 11;9:806800. doi: 10.3389/fchem.2021.806800. eCollection 2021.

Abstract

The energy, material, and environmental problems of society require clean materials and impose an urgent need to develop effective chemical processes for obtaining and converting energy to ensure further sustainable development. To solve these challenges, it is necessary, first of all, to learn solar energy harvesting through the development of artificial photosynthesis. In our planet, water, carbon dioxide, and methane are such affordable and inexhaustible clean materials. Electro/photocatalytic water splitting, and also CO and CH transforming into valuable products, requires the search for relevant efficient and selective processes and catalysts. Of great interest is the emerging new generation of bioinspired catalysts-metallocavitins (MCs). MCs are attracting increasing attention of researchers as advanced models of metalloenzymes, whose efficiency and selectivity are well known. The primary field of MC application is fine organic synthesis and enantioselective catalysis. On the other hand, MCs demonstrate high activity for energy challenging reactions involving small gas molecules and high selectivity for converting them into valuable products. This mini-review will highlight some recent advances in the synthesis of organic substances using MCs, but its main focus will be on the rapid development of advanced catalysts for the activation of small molecules, such as HO, CO, and CH, and the prospects for creating related technological processes in the future.

摘要

社会的能源、材料和环境问题需要清洁材料,并迫切需要开发有效的化学过程来获取和转换能源,以确保进一步的可持续发展。为了解决这些挑战,首先有必要通过发展人工光合作用来学习太阳能收集。在我们的星球上,水、二氧化碳和甲烷是如此廉价且取之不尽的清洁材料。电/光催化水分解,以及将一氧化碳和甲烷转化为有价值的产品,需要寻找相关的高效且选择性的过程和催化剂。新兴的新一代受生物启发的催化剂——金属空穴蛋白(MCs)引起了人们极大的兴趣。作为金属酶的先进模型,MCs正吸引着越来越多研究人员的关注,其效率和选择性是众所周知的。MCs的主要应用领域是精细有机合成和对映选择性催化。另一方面,MCs对涉及小分子气体的能源挑战性反应表现出高活性,并且对将它们转化为有价值的产品具有高选择性。这篇综述将重点介绍使用MCs合成有机物质的一些最新进展,但其主要重点将是用于激活小分子(如氢气、一氧化碳和甲烷)的先进催化剂的快速发展,以及未来创建相关工艺过程的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3727/8873522/1a4564a55ce6/fchem-09-806800-g001.jpg

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