Nickel-Catalyzed 1,2-Diarylation of Simple Alkenyl Amides

  • Joseph Derosa (3132222)
  • Roman Kleinmans (6089858)
  • Van T. Tran (2071753)
  • Malkanthi K. Karunananda (4850443)
  • Steven R. Wisniewski (1327494)
  • Martin D. Eastgate (1314654)
  • Keary M. Engle (1961296)
Publication date
December 2018
Publisher
American Chemical Society (ACS)

Abstract

A nickel-catalyzed conjunctive cross-coupling of simple alkenyl amides with aryl iodides and aryl boronic esters is reported. The reaction is enabled by an electron-deficient olefin (EDO) ligand, dimethyl fumarate, and delivers the desired 1,2-diarylated products with excellent regiocontrol. Under optimized conditions, a wide range of amides derived from 3-butenoic acid, 4-pentenoic acid, and allyl amine are compatible substrates. This method represents the first example of regiocontrolled 1,2-diarylation directed by a native amide functional group. Computational analysis sheds light on the potential substrate binding mode and the role of the EDO ligand in the reductive elimination step

Extracted data

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