Enantioselective Assembly of Cycloenones with a Nitrile-Containing All-Carbon Quaternary Center from Malononitriles Enabled by Ni Catalysis

Chiral nitriles are valuable molecules in modern organic synthesis and drug discovery. Selectively differentiating the two nitrile groups of widely available malono­nitrile derivatives is a straightforward yet underdeveloped route to construct enantio­enriched nitriles. Here we report an enantio­sel...

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Veröffentlicht in:Journal of the American Chemical Society 2020-04, Vol.142 (16), p.7328-7333
Hauptverfasser: Lu, Zhiwu, Hu, Xu-Dong, Zhang, Hui, Zhang, Xiao-Wen, Cai, Jinhui, Usman, Muhammad, Cong, Hengjiang, Liu, Wen-Bo
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Sprache:eng
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Zusammenfassung:Chiral nitriles are valuable molecules in modern organic synthesis and drug discovery. Selectively differentiating the two nitrile groups of widely available malono­nitrile derivatives is a straightforward yet underdeveloped route to construct enantio­enriched nitriles. Here we report an enantio­selective nickel-catalyzed desymmetrization of malono­nitriles for the generation of nitrile-containing all-carbon quaternary stereocenters. This protocol involves a nickel-catalyzed addition of aryl boronic acids to alkynes, followed by a selective nitrile insertion, providing unprecedented access to enantio­enriched 5–7-membered α-cyano-cycloenones with a fully substituted olefin from a broad range of substrates. The synthetic utility of these nitrile products is demonstrated by gram-scale synthesis and conversion to several useful functional groups.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.0c02075