Issue 1, 2025

Radical pathways for 2,4-chromandione synthesis via photoexcitation of 4-hydroxycoumarins

Abstract

4-Hydroxycoumarins are well-known for their ground-state nucleophilic behavior, which has been widely exploited for their functionalization. Herein, we reveal a previously unexplored photochemical reactivity: upon deprotonation and excitation with purple light, 3-substituted 4-hydroxycoumarins reach an excited state and act as single-electron transfer (SET) reductants, generating radicals from stable substrates. This newfound reactivity enables the direct synthesis of 3,3-disubstituted 2,4-chromandiones via a radical dearomatization process. By enabling the incorporation of alkyl and perfluoroalkyl fragments, this protocol offers a straightforward and mild route to access synthetically valuable chromanone scaffolds featuring a quaternary stereocenter. Comprehensive photophysical studies confirmed that deprotonated 4-hydroxycoumarins are potent SET reductants in their excited state, making them suitable for initiating radical-based transformations.

Graphical abstract: Radical pathways for 2,4-chromandione synthesis via photoexcitation of 4-hydroxycoumarins

Supplementary files

Article information

Article type
Edge Article
Submitted
05 Nov 2024
Accepted
19 Nov 2024
First published
25 Nov 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2025,16, 124-129

Radical pathways for 2,4-chromandione synthesis via photoexcitation of 4-hydroxycoumarins

S. Mallik, E. Sfreddo, H. Wang and P. Melchiorre, Chem. Sci., 2025, 16, 124 DOI: 10.1039/D4SC07495E

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