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Palladium-catalyzed asymmetric arylation, vinylation, and allenylation of tert-cyclobutanois via enantioselective C-C bond cleavage

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 125, Issue 29, Pages 8862-8869

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja035293l

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A novel enantioselective C-C bond cleavage has been achieved using palladium catalysts and chiral N,P-bidentate ligands in the asymmetric arylation, vinylation, and allenylation of tert-cyclobutanols. In these reactions, the enantioselective beta-carbon elimination of Pd(II) alcoholate formed in situ is the key step. Treatment of tert-cyclobutanols with arylating reagents in toluene in the presence of Pd(OAC)(2), a chiral ferrocene-containing N,P-bidentate ligand, and Cs2CO3 affords optically active gamma-arylated ketones in excellent yields with high enantioselectivity (up to 95% ee). When vinylating reagents are used in place of arylating ones, the asymmetric vinylation also proceeds to afford optically active gamma-vinylated ketones in high yields with good to high enantioselectivity. When propargylic acetates are used, which are known to generate (sigma-allenyl)palladium complexes with Pd(0) species, asymmetric allenylation occurs to afford optically active gamma-allenylated ketones in moderate to good yields with moderate to high enantioselectivity.

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