PofoliaShared via Pofolia

The Journal of Organic Chemistry· 2026Q2

Visible-Light-Induced Phosphonium Salt Catalysis for Site-Selective Aromatic C–H Halogenation and Chalcogenation

Jiazhen Li, Zhongmei Wang, Wen Gu, Xingyu Liu et al.

Short summary

A new visible-light-induced phosphonium salt catalysis enables direct aromatic C–H chlorination, bromination, iodination, thiocyanation, selenocyanation, and trifluoromethylthiolation under mild conditions.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Visible-light-induced phosphonium salt catalysis for aromatic C–H functionalization.
  • Enables direct chlorination, bromination, iodination, thiocyanation, selenocyanation, and trifluoromethylthiolation.
  • Operates under mild conditions without transition metals.
  • Shows good site selectivity on arenes, heteroarenes, amino acid derivatives, and bioactive molecules.
  • Mechanism involves electron donor–acceptor complex formation and photoinduced radical generation.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract A visible-light-induced phosphonium salt catalyzed approach to site-selective aromatic C–H halogenation and chalcogenation of arenes and heteroarenes is described. In this system, readily available phosphorus catalysts interact in situ with commercial halogenating and chalcogenating reagents to generate photoactive phosphonium salt species, which upon visible-light irradiation enable direct aromatic C–H chlorination, bromination, iodination, thiocyanation, selenocyanation, and trifluoromethylthiolation under mild conditions. The method avoids transition-metal participation and shows good site selectivity across a range of arenes and heteroarenes, including amino acid derivatives and selected bioactive molecules. Mechanistic experiments support the involvement of electron donor–acceptor (EDA) complex formation between the phosphine catalyst and the functionalization reagent, followed by photoinduced radical generation. This study establishes a visible-light phosphonium salt catalysis platform for the site-selective functionalization of aromatic frameworks relevant to amino acid derivatives and bioactive molecules.

The authors' abstract, as published at the source. The Journal of Organic Chemistry, 2026 · DOI ↗

TakeawaysPremium
Ask the paperFree account

Continue with a free account

Ask the paper: 3 free questions a day about this paper; save it, get its citation, new summaries every day for your field. Takeaways are Premium.

Continue free on the web

Sign in with Google or Apple; no card needed. You come back to this paper.

On your phone:

Field: Organic Chemistry

Organic ChemistryChemistry