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Cobalt-catalyzed reductive coupling of activated alkenes with alkynes

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 129, 期 39, 页码 12032-12041

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AMER CHEMICAL SOC
DOI: 10.1021/ja073604c

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Cobalt complex/Zn systems effectively catalyze the reductive coupling of activated alkenes with alkynes in the presence of water to give substituted alkenes with very high regio- and stereoselectivity in excellent yields. While the intermolecular reaction of acrylates, acrylonitriles, and vinyl sulfones with alkynes takes place in the presence Of COl(2)(PPh3)(2)/Zn, the reaction of enones and enals with alkynes requires the use of the Col(2)(dppe)/Zn/Znl(2) system. The intramolecular reductive coupling of activated alkenes (enones, enals, acrylates, and acrylonitriles) with alkynes also works efficiently. Further a variety of cyclic lactones and lactams were prepared using this methodology. Possible mechanistic pathways are proposed based on a deuterium-labeling experiment carried out in the presence of D2O.

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