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February 20, 2026Organic Letters3 citations

Photocatalytic Selective Synthesis of Hemiketals from Alkenes, α-Halo Acylarenes, and Water via N -Methylindole Catalysis

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TJTao JuZWZhicheng WeiMGMin Ge

Key Points

  • The study aims to develop a novel method for synthesizing hemiketals and tetrahydrofuran derivatives using N-methylindole as a catalyst.
  • Utilized visible-light-mediated N-methylindole catalysis for the transformation.
  • Combined alkenes, α-halo acylarenes, and water in the reaction.
  • Incorporated Lewis acid catalysis to facilitate electron transfer.
  • Employed EDA complexes for radical addition and cyclization.
  • Achieved efficient and selective synthesis of five-membered hemiketals.
  • Noted a significant improvement in chemoselectivity and mild reaction conditions.
  • Identified intramolecular cyclization as a critical step in the reaction.

Abstract

Herein, we report a visible-light-mediated N-methylindole-catalyzed difunctionalization of alkenes, enabling efficient and highly selective synthesis of five-membered hemiketals and polysubstituted tetrahydrofuran derivatives. In this transformation, readily available N-methylindole acts as both the catalyst and the electron donor of the EDA complex. Under photoirradiation and Lewis acid catalysis, single-electron transfer occurs between N-methylindole and α-halogenated acylarenes via EDA complexes, triggering subsequent radical addition and cyclization reactions. Notably, intramolecular cyclization between the benzylic carbocation and the carbonyl group is the key step in this reaction. Overall, this strategy features a novel synthetic approach, mild reaction conditions, and excellent chemoselectivity, offering a new pathway for synthesizing complex heterocyclic compounds.

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Cite This Study

Ju et al. (2026) studied this question.

synapsesocial.com/papers/6997fa49ad1d9b11b3453671https://doi.org/10.1021/acs.orglett.6c00192
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