Issue 18, 2023

Photocatalyzed radical multicomponent alkylacylation of [1.1.1]propellane to synthesize 1,3-disubstituted BCP ketones

Abstract

Bicyclo[1.1.1]pentylketones (BCP ketones) are becoming increasingly significant in pharmaceutical chemistry as sp3-rich bioisosteres of aryl ketones. However, the limited availability of efficient synthetic methods for BCP ketones is impeding early-stages of drug discovery in pharmaceutical chemistry. In this study, we present a photoredox-enabled protocol for the facile synthesis of unsymmetrical 1,3-disubstituted BCP ketones. By utilizing a diverse range of hypervalent iodine salts as alkyl precursors and inexpensive aryl aldehydes as acyl precursors, we can readily convert [1.1.1]propellane into 1,3-disubstituted BCP ketones in moderate to good yields. This reaction proceeds at room temperature, is operationally simple, works under redox-neutral conditions, and exhibits a broad substrate scope with high functional group tolerance. Additionally, further transformation of BCP ketones into a variety of other BCP derivatives demonstrates the synthetic value of this developed method.

Graphical abstract: Photocatalyzed radical multicomponent alkylacylation of [1.1.1]propellane to synthesize 1,3-disubstituted BCP ketones

Supplementary files

Article information

Article type
Research Article
Submitted
06 Jul 2023
Accepted
07 Aug 2023
First published
07 Aug 2023

Org. Chem. Front., 2023,10, 4616-4622

Photocatalyzed radical multicomponent alkylacylation of [1.1.1]propellane to synthesize 1,3-disubstituted BCP ketones

Y. Liu, Y. Jiang, J. Zhang, Y. Mei, D. Li and F. Pan, Org. Chem. Front., 2023, 10, 4616 DOI: 10.1039/D3QO01019H

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