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Photoinduced metal-free borylation of aryl halides catalysed by an in situ formed donor-acceptor complex.

Manhong LiSiqi LiuHaoshi BaoQini LiYi-Hui DengTian-Yu SunLeifeng Wang
Published in: Chemical science (2022)
Organoboron compounds are very important building blocks which can be applied in medicinal, biological and industrial fields. However, direct borylation in a metal free manner has been very rarely reported. Herein, we described the successful direct borylation of haloarenes under mild, operationally simple, catalyst-free conditions, promoted by irradiation with visible light. Mechanistic experiments and computational investigations indicate the formation of an excited donor-acceptor complex with a -3.12 V reduction potential, which is a highly active reductant and can facilitate single-electron-transfer (SET) with aryl halides to produce aryl radical intermediates. A two-step one-pot method was developed for site selective aromatic C-H bond borylation. The protocol's good functional group tolerance enables the functionalization of a variety of biologically relevant compounds, representing a new application of aryl radicals merged with photochemistry.
Keyphrases
  • electron transfer
  • visible light
  • energy transfer
  • randomized controlled trial
  • solar cells
  • heavy metals
  • gold nanoparticles
  • amino acid
  • human health
  • radiation therapy
  • metal organic framework