Singly and doubly oxidized carbenes and their applications in catalysis

IF 11.5 Q1 CHEMISTRY, PHYSICAL Chem Catalysis Pub Date : 2024-11-04 DOI:10.1016/j.checat.2024.101159
Alexis K. Day, Mehdi Abdellaoui, Michèle Soleilhavoup, Guy Bertrand
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Abstract

Over the last three decades, the highly tunable properties of N-heterocyclic carbenes (NHCs) and other stable singlet carbenes have led to a variety of applications. This perspective shows a novel facet of carbenes—i.e., their reductive properties—that allows them to function as catalysts in single-electron transfer (SET) reactions. The isolation and even the spectroscopic characterization of a singly oxidized carbene have yet to be done, but these species readily abstract hydrogen atoms while giving back the carbene conjugate acid, which behaves as the resting state of catalytic cycles. In sharp contrast, a doubly oxidized carbene has been isolated, and there is a strong likelihood that many other carbene dications will be isolated. Their first Lewis acidity is very high, suggesting possible applications in Lewis acid catalysis.

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单氧化和双氧化碳烯及其在催化中的应用
在过去的三十年里,N-杂环碳烯(NHCs)和其他稳定的单碳烯的高度可调特性带来了多种应用。这一视角展示了碳烯的一个新方面,即它们的还原特性,使它们能够在单电子转移(SET)反应中发挥催化剂的作用。单氧化碳烯的分离甚至光谱特性都还没有完成,但这些物种很容易抽取氢原子,同时还原出碳烯共轭酸,这种酸是催化循环的静止状态。与此形成鲜明对比的是,我们已经分离出了一种双氧化碳烯,而且很有可能分离出许多其他碳烯二阳离子。它们的第一路易斯酸度非常高,表明可能应用于路易斯酸催化。
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来源期刊
CiteScore
10.50
自引率
6.40%
发文量
0
期刊介绍: Chem Catalysis is a monthly journal that publishes innovative research on fundamental and applied catalysis, providing a platform for researchers across chemistry, chemical engineering, and related fields. It serves as a premier resource for scientists and engineers in academia and industry, covering heterogeneous, homogeneous, and biocatalysis. Emphasizing transformative methods and technologies, the journal aims to advance understanding, introduce novel catalysts, and connect fundamental insights to real-world applications for societal benefit.
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