Integrating Organic Lewis Acid and Redox Catalysis: The Phenalenyl Cation in Dual Role

Ahmed, Jasimuddin ; Chakraborty, Soumi ; Jose, Anex ; P, Sreejyothi ; Mandal, Swadhin K. (2018) Integrating Organic Lewis Acid and Redox Catalysis: The Phenalenyl Cation in Dual Role Journal of the American Chemical Society, 140 (26). pp. 8330-8339. ISSN 0002-7863

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Official URL: http://doi.org/10.1021/jacs.8b04786

Related URL: http://dx.doi.org/10.1021/jacs.8b04786

Abstract

In recent years, merging different types of catalysis in a single pot has drawn considerable attention and these catalytic processes have mainly relied upon metals. However, development of a completely metal free approach integrating organic redox and organic Lewis acidic property into a single system has been missing in the current literature. This study establishes that a redox active phenalenyl cation can activate one of the substrates by single electron transfer process while the same can activate the other substrate by a donor–acceptor type interaction using its Lewis acidity. This approach has successfully achieved light and metal-free catalytic C–H functionalization of unactivated arenes at ambient temperature (39 entries, including core moiety of a top-selling molecule boscalid), an economically attractive alternative to the rare metal-based multicatalysts process. A tandem approach involving trapping of reaction intermediates, spectroscopy along with density functional theory calculations unravels the dual role of phenalenyl cation.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:118281
Deposited On:19 May 2021 16:49
Last Modified:19 May 2021 16:49

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