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Ketone -alkylation at the more-hindered site

Ming-Ming Li, Tianze Zhang, Lei Cheng, Wei-Guo Xiao, Jin-Tao Ma, Li-Jun Xiao, Qi-Lin Zhou

NATURE COMMUNICATIONS(2023)

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摘要
Control of the regioselectivity of alpha-alkylation of carbonyl compounds is a longstanding topic of research in organic chemistry. By using stoichiometric bulky strong bases and carefully adjusting the reaction conditions, selective alkylation of unsymmetrical ketones at less-hindered alpha-sites has been achieved. In contrast, selective alkylation of such ketones at more-hindered alpha-sites remains a persistent challenge. Here we report a nickel-catalysed alkylation of unsymmetrical ketones at the more-hindered alpha-sites with allylic alcohols. Our results indicate that the space-constrained nickel catalyst bearing a bulky biphenyl diphosphine ligand enables the preferential alkylation of the more-substituted enolate over the less-substituted enolate and reverses the conventional regioselectivity of ketone alpha-alkylation. The reactions proceed under neutral conditions in the absence of additives, and water is the only byproduct. The method has a broad substrate scope and permits late-stage modification of ketone-containing natural products and bioactive compounds.
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