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Mechanistic Insights into Iron-Catalyzed C-H Bond Activation and C-C Coupling.

Samantha M BrewerTimothy M SchwartzMagy A MekhailLara S TuranTimothy John PriorTimothy J HubinBenjamin G JaneskoKayla N Green
Published in: Organometallics (2021)
Iron-catalyzed C-C coupling reactions of pyrrole provide a unique alternative to the traditional Pd-catalyzed counterpart. However, many details regarding the actual mechanism remain unknown. A series of macrocyclic iron(III) complexes were used to evaluate specifics related to the role of O 2 , radicals, and μ -oxodiiron-complex participation in the catalytic cycle. It was determined that the mononuclear tetra-azamacrocyclic complex is a true catalyst and not a stoichiometric reagent, while more than one equivalent of a sacrificial oxidant is needed. Furthermore, the reaction does not proceed through an organic radical pathway. μ -Oxodiiron complexes are not involved in the main catalytic pathway, and the dimers are, in fact, off-cycle species that decrease catalytic efficiency.
Keyphrases
  • room temperature
  • ionic liquid
  • iron deficiency
  • crystal structure
  • physical activity
  • peripheral blood
  • electron transfer
  • metal organic framework
  • visible light