Diastereoselective olefin amidoacylationviaphotoredox PCET/nickel-dual catalysis: reaction scope and mechanistic insights

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Abstract

The selective 1,2-aminoacylation of olefins provides opportunities for the rapid construction of nitrogen-containing molecules. However, the lack of CO-free acylation reactions has limited their application. By using photoredox proton-coupled electron transfer (PCET)/Ni dual-catalysis, a highly regio- and diastereoselective amidoacylation of unactivated olefins has been developed. Various acyl electrophiles are compatible, including alkyl- and aryl acyl chlorides and anhydrides, as well asin situactivated carboxylic acids. Hammett studies and other mechanistic experiments to elucidate features of the diastereoselectivity, a transient absorption study of the PCET step, as well as computational evidence, provide an in-depth understanding of the disclosed transformation.

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Zheng, S., Zhang, S. Q., Saeednia, B., Zhou, J., Anna, J. M., Hong, X., & Molander, G. A. (2020). Diastereoselective olefin amidoacylationviaphotoredox PCET/nickel-dual catalysis: reaction scope and mechanistic insights. Chemical Science, 11(16), 4131–4137. https://doi.org/10.1039/d0sc01459a

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