Issue 4, 2026

EDA-complex photoactivation of thianthrene-based radical precursors enables divergent access to functionalized saturated heterocycles

Abstract

We report a novel EDA complex stabilized by π–π and CH–π interactions between thianthrene-derived radical precursors and unsaturated carboxylic acids or alcohols. This photocatalyst-free strategy allows access to different disubstituted heterocycles. This transformation proceeds efficiently under visible-light irradiation, delivering a broad array of structurally diverse lactones and tetrahydrofuranes in good to excellent yields. Both aryl and alkyl-derived thianthrenium salts are competent substrates, including primary, secondary, and sterically hindered tertiary alkyl derivatives. In addition, this work shows the first example of iminothianthrenes participating in EDA-complex driven photochemistry providing access to aminated tetrahydrofuranes. UV–Vis, NMR spectroscopy analyses and DFT calculations support the formation of the ground-state EDA complex stabilized by π–π and CH–π interactions. The reaction proceeds via a non-chain pathway as indicated by the photochemical quantum yield.

Graphical abstract: EDA-complex photoactivation of thianthrene-based radical precursors enables divergent access to functionalized saturated heterocycles

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Article information

Article type
Research Article
Submitted
07 Oct 2025
Accepted
29 Dec 2025
First published
02 Jan 2026
This article is Open Access
Creative Commons BY license

Org. Chem. Front., 2026,13, 1116-1124

EDA-complex photoactivation of thianthrene-based radical precursors enables divergent access to functionalized saturated heterocycles

Y. Ji, R. Pleixats, I. Fernández, C. Gimbert-Suriñach, A. Vallribera and A. Granados, Org. Chem. Front., 2026, 13, 1116 DOI: 10.1039/D5QO01397F

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