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Photo-Initiated Cobalt-Catalyzed Radical Olefin Hydrogenation.

Sier SangTobias UnruhSerhiy DemeshkoLuis I DomenianniNicolaas P van LeestPhilipp MarquetandFelix SchneckChristian WürteleFelix J de ZwartBas de BruinLeticia GonzálezPeter VöhringerSven Schneider
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2021)
Outer-sphere radical hydrogenation of olefins proceeds via stepwise hydrogen atom transfer (HAT) from transition metal hydride species to the substrate. Typical catalysts exhibit M-H bonds that are either too weak to efficiently activate H2 or too strong to reduce unactivated olefins. This contribution evaluates an alternative approach, that starts from a square-planar cobalt(II) hydride complex. Photoactivation results in Co-H bond homolysis. The three-coordinate cobalt(I) photoproduct binds H2 to give a dihydrogen complex, which is a strong hydrogen atom donor, enabling the stepwise hydrogenation of both styrenes and unactivated aliphatic olefins with H2 via HAT.
Keyphrases
  • transition metal
  • electron transfer
  • reduced graphene oxide
  • metal organic framework
  • molecular dynamics
  • carbon nanotubes
  • room temperature