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Olefination via Cu-Mediated Dehydroacylation of Unstrained Ketones.

Xukai ZhouYan XuGuangbin Dong
Published in: Journal of the American Chemical Society (2021)
The dehydroacylation of ketones to olefins is realized under mild conditions, which exhibits a unique reaction pathway involving aromatization-driven C-C cleavage to remove the acyl moiety, followed by Cu-mediated oxidative elimination to form an alkene between the α and β carbons. The newly adopted N'-methylpicolinohydrazonamide (MPHA) reagent is key to enable efficient cleavage of ketone C-C bonds at room temperature. Diverse alkyl- and aryl-substituted olefins, dienes, and special alkenes are generated with broad functional group tolerance. Strategic applications of this method are also demonstrated.
Keyphrases
  • room temperature
  • ionic liquid
  • dna binding
  • molecular docking
  • metal organic framework
  • aqueous solution
  • fatty acid
  • transcription factor
  • electron transfer