Chemistry - An Asian Journal · 2018 · 24 citations · 61 references
Chemical EngineeringCross-coupling ReactionEngineeringAlkene MetathesisTheoretical InvestigationCatalytic SynthesisOrganic ChemistryOrganometallic CatalysisCatalysisAmino GroupChemistryMolecular CatalysisAsymmetric CatalysisPalladium-catalyzed ReactionsNeutral DiorganopalladiumBiomolecular Engineering
Theoretical investigations were carried out to elucidate the origin of chemoselectivity in the palladium-catalyzed reactions of 2-(dimethylphenylsilyl)phenyl triflates with or without an amino group at the 3-position. The selective formation of a 5,10-dihydrophenazasiline rather than a dibenzosilole from the substrate with an amino group at the 3-position could be successfully explained by proposing a new 1,5-palladium migration pathway that involves a neutral diorganopalladium(II) intermediate along with the subsequent formation of a low-energy amine-coordinated palladacycle intermediate prior to the C-N bond-forming process.
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Philip J. Stephens, F. J. Devlin, Cary F. Chabalowski et al. · The Journal of Physical Chemistry · 1994 · 22.5K citations
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