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August 6, 20250 citations

Photocatalyzed Hydrogen Atom Transfer Enables Multicomponent Olefin Oxo-Amidomethylation Under Aerobic Conditions

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MLMattia LeporiDIDimitris I. IoannouJBJoshua P. Barham

Key Points

  • The method allows for the functionalization of olefins by introducing two groups in one step.
  • It employs photocatalyzed hydrogen atom transfer to facilitate the reaction under aerobic conditions.
  • A key carbon-centered radical intermediate is generated and trapped by oxygen, producing valuable products.
  • This approach is scalable and compatible with various aryl olefins and amides, enhancing synthetic applications.

Abstract

The direct functionalization of abundant and readily available feedstock chemicals has emerged as a powerful strategy to rapidly increase molecular complexity and access valuable scaffolds. Herein, we report a novel photocatalyzed three-component oxo-amidomethylation of aromatic olefins under aerobic conditions, enabling the synthesis of N-(γ-oxopropyl)amides via simultaneous incorporation of two orthogonal functional groups across the alkene C═C bond in a single step. Mechanistic features include the photocatalyzed hydrogen atom transfer (HAT)-mediated engagement of the α-N-alkyl C(sp³)–H bond in cost-effective amides and the trapping of a key olefin-derived carbon-centered radical intermediate by molecular oxygen to afford the oxo-functionalized homologated products. This cascade protocol demonstrates compatibility with a broad range of aryl olefins and amides, as well as efficient scalability. The method provides streamlined access to high-value molecular architectures of synthetic and pharmaceutical relevance without the need for pre-functionalized radical precursors.

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Cite This Study

Lepori et al. (2025) studied this question.

synapsesocial.com/papers/689a0fa0e6551bb0af8d17d6https://doi.org/10.26434/chemrxiv-2025-whxc3
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