Accessing Sterically Congested Benzannulated Cyclic Aryl Ethers via Photoredox Decarboxylative Giese-Type C2–C3 Bond Formation

Abstract The visible-light-driven photocatalytic decarboxylation of α-aryloxy carboxylic acids produces α-oxy carbon-centered radicals that undergo intramolecular Giese addition to form 2,3-dihydrobenzofurans, chromans, 2,3,4,5-tetrahydrobenzo[b]oxepines, and 3,4,5,6-tetrahydro-2H-benzo[b]oxocines. In contrast to the existing methods, this unconventional strategy for the construction of five-, six-, seven-, and eight-membered oxygen heterocycles via the formation of the C2–C3 bond enables the synthesis of sterically demanding O-heterocycles bearing multiple substituents at the C2 and C3 positions. The mild reaction conditions render these transformations highly chemoselective and compatible with various functional groups.

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Publication Details

Journal
The Journal of Organic Chemistry
Published
2026-09-17
DOI
https://doi.org/10.1021/acs.joc.6c01643
Primary Topic
Radical Photochemical Reactions
Type
article
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article

Accessing Sterically Congested Benzannulated Cyclic Aryl Ethers via Photoredox Decarboxylative Giese-Type C2–C3 Bond Formation

Ivan Vilotijević, Markus Lange, Igor Topalović
The Journal of Organic Chemistry
Radical Photochemical Reactions
article

Accessing Sterically Congested Benzannulated Cyclic Aryl Ethers via Photoredox Decarboxylative Giese-Type C2–C3 Bond Formation

Ivan Vilotijević, Markus Lange, Igor Topalović
article en

Abstract

Abstract The visible-light-driven photocatalytic decarboxylation of α-aryloxy carboxylic acids produces α-oxy carbon-centered radicals that undergo intramolecular Giese addition to form 2,3-dihydrobenzofurans, chromans, 2,3,4,5-tetrahydrobenzo[b]oxepines, and 3,4,5,6-tetrahydro-2H-benzo[b]oxocines. In contrast to the existing methods, this unconventional strategy for the construction of five-, six-, seven-, and eight-membered oxygen heterocycles via the formation of the C2–C3 bond enables the synthesis of sterically demanding O-heterocycles bearing multiple substituents at the C2 and C3 positions. The mild reaction conditions render these transformations highly chemoselective and compatible with various functional groups.

The Journal of Organic Chemistry
Schiller International University (FR), Friedrich Schiller University Jena (DE)
Openalex Percentile: Top 20%
Radical Photochemical Reactions
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