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Direct C-H Radiocyanation of Arenes via Organic Photoredox Catalysis.

Wei ChenXuedan WuJoshua B McManusGerald T BidaKang-Po LiZhanhong WuDavid A NicewiczZibo Li
Published in: Organic letters (2022)
Innovative labeling methods to incorporate the short-lived positron emitter carbon-11( 11 C) into bioactive molecules are attractive for positron emission tomography (PET) tracer discovery. Herein, we report a direct C-H radiocyanation method that incorporates [ 11 C]cyanide ( 11 CN - ) to a series of functional electron-rich arenes via photoredox catalysis. This photoredox-mediated radiocyanation can proceed in an aerobic environment and is not moisture sensitive, which allows for ease of reaction setup and for scalable synthesis of 11 C-aryl nitriles from readily available precursors.
Keyphrases
  • positron emission tomography
  • visible light
  • computed tomography
  • pet imaging
  • pet ct
  • small molecule
  • lymph node metastasis
  • high throughput
  • high intensity
  • squamous cell carcinoma
  • electron transfer
  • fluorescent probe