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Updated: May 22, 2025

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
Published on: June 21, 2017
Reversibility and Enantioselectivity of Palladium-Catalyzed Allylic Aminations: Ligand, Base-Additive, and Solvent
Isabelle N-M Leibler1, Madison B Goodstein1, Cole A Easton1
1Department of Chemistry, Middlebury College, Middlebury, Vermont 05753, United States.
Abstract:
The enantioselective, palladium-catalyzed reaction of benzylamine with (E)-1,3-diphenylallyl ethyl carbonate was examined with 12 different chiral ligands across a range of scaffold types. In 8 out of 12 cases, the observed enantiomeric excess was 36-92% higher when DBU or Cs2CO3 was added. Nucleophile crossover experiments between the N-benzyl-1,3-diphenylallylamine product and 4-methoxybenzylamine mechanistically linked the changes in enantioselectivity to reformation of the η3-allylpalladium intermediate. In the crossover reactions with 9 out of 12 chiral ligands, 10-75% less elimination to 1-phenylbutadiene was observed with Cs2CO3 than with DBU. Analysis of percent crossover vs percent completion of the simultaneous reaction of 1-phenyl-3-methylallyl ethyl carbonate in the crossover experiment revealed that (1) the formation of the 1,3-diphenylallylpalladium intermediate frequently occurred before the reaction of 1-phenyl-3-methylallyl ethyl carbonate was complete, (2) the addition of DBU or Cs2CO3 suppressed formation of the 1,3-diphenylallylpalladium intermediate, and (3) the less polar toluene and THF solvents resulted in less or slower formation of the 1,3-diphenylallylpalladium intermediate than the more polar DCM and DMF solvents.
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