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Palladium-Catalyzed C-H Amination/[2 + 3] or [2 + 4] Cyclization via C(sp3 or sp2)-H Activation.

Yang AnYuke LiXiao-Yan ZhangZhe ZhangXue-Ya GouYa-Nan DingQiao LiYong-Min Liang
Published in: Organic letters (2021)
This report describes a palladium-catalyzed Catellani reaction consisting of amination/[2 + 3] or [2 + 4] cyclization via a carboxylate ligand-exchange strategy. This method effectively activates ortho-substituents that avoid a second C-H palladation. The scope of substrates was broad, o-methyl-substituted iodoarenes were applied to the reaction smoothly, and o-phenyl-substituted iodoarenes can also be obtained by this method. In terms of mechanism, density functional theory calculations proved the sequence of the key five-membered aryl-norbornene-palladacycle intermediate formation and C(sp3 or sp2)-H activation.
Keyphrases
  • density functional theory
  • molecular dynamics
  • molecular docking
  • molecular dynamics simulations
  • amino acid
  • electron transfer
  • monte carlo