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Visible-Light-Initiated Manganese Catalysis for C-H Alkylation of Heteroarenes: Applications and Mechanistic Studies.

Philippe NuhantMartins S OderindeJulien GenovinoAntoine JuneauYohann GagnéChristophe AllaisGary M ChinigoChulho ChoiNeal W SachLouise BernierYvette M FobianMark W BundesmannBhagyashree KhunteMathieu FrenetteOlugbeminiyi O Fadeyi
Published in: Angewandte Chemie (International ed. in English) (2017)
A visible-light-driven Minisci protocol that employs an inexpensive earth-abundant metal catalyst, decacarbonyldimanganese Mn2 (CO)10 , to generate alkyl radicals from alkyl iodides has been developed. This Minisci protocol is compatible with a wide array of sensitive functional groups, including oxetanes, sugar moieties, azetidines, tert-butyl carbamates (Boc-group), cyclobutanes, and spirocycles. The robustness of this protocol is demonstrated on the late-stage functionalization of complex nitrogen-containing drugs. Photophysical and DFT studies indicate a light-initiated chain reaction mechanism propagated by . Mn(CO)5 . The rate-limiting step is the iodine abstraction from an alkyl iodide by . Mn(CO)5 .
Keyphrases
  • visible light
  • randomized controlled trial
  • room temperature
  • case control
  • metal organic framework
  • transition metal
  • molecular docking
  • density functional theory
  • mass spectrometry
  • carbon dioxide