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September 12, 2025The Journal of Organic Chemistry4 citations

Oxidative Halogenation of Alkenes or Alkynes via Visible Light Induces Singlet Oxygen Production

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PZPenggang ZhaoJHJing HouHSHang Su

Key Points

  • The reaction produces α-haloketones through oxidative halogenation using visible light and O2 as a green oxygen source.
  • Synthesis involves economically accessible NaBr and MgCl2·6H2O halogen sources, demonstrating an eco-friendly method.
  • Mechanistically, blue light excitation generates singlet oxygen from the acetonitrile-oxygen complex, leading to the reaction.
  • This process highlights potential applications in sustainable synthetic chemistry, utilizing environmentally benign reagents.

Abstract

We report a mild visible light-promoted 1,2-difunctionalization of alkenes or alkynes for the synthesis of α-haloketones. The reaction employs O2 as the green oxygen source and economically accessible NaBr and MgCl2·6H2O as the halogen source. In the mechanism, blue light excitation of the acetonitrile-oxygen complex generates singlet oxygen, which subsequently is converted into the superoxide ion. The halide ion then produces a halogen radical via electron transfer to the arene, thereby initiating the reaction to yield the product.

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Cite This Study

Zhao et al. (2025) studied this question.

synapsesocial.com/papers/68d44b2231b076d99fa5422ahttps://doi.org/10.1021/acs.joc.5c01377
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