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Accelerated and Concerted Aza-Michael Addition and SuFEx Reaction in Microdroplets in Unitary and High-Throughput Formats.

Jyotirmoy GhoshJoshua MendozaRobert Graham Cooks
Published in: Angewandte Chemie (International ed. in English) (2022)
The sulfur fluoride exchange (SuFEx) reaction is significant in drug discovery, materials science, and chemical biology. Conventionally, it involves installation of SO 2 F followed by fluoride exchange by a catalyst. We report catalyst-free Aza-Michael addition to install SO 2 F and then SuFEx reaction with amines, both occurring in concert, in microdroplets under ambient conditions. The microdroplet reaction is accelerated by a factor of ∼10 4 relative to the corresponding bulk reaction. We suggest that the superacidic microdroplet surface assists SuFEx reaction by protonating fluorine to create a good leaving group. The reaction scope was established by performing individual reactions in microdroplets of 18 amines in four solvents and confirmed using high-throughput desorption electrospray ionization experiments. The study demonstrates the value of microdroplet-assisted accelerated reactions in combination with high-throughput experimentation for characterization of reaction scope.
Keyphrases
  • high throughput
  • drug discovery
  • electron transfer
  • public health
  • computed tomography
  • positron emission tomography
  • metal organic framework