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Iridium-Catalyzed Asymmetric Cascade Allylation/Retro-Claisen Reaction

Zhiyuan Yi, Lu Xiao, Xin Chang, Xiu‐Qin Dong, Chun‐Jiang Wang

2022Journal of the American Chemical Society32 citationsDOI

Abstract

An enantiomerically enriched 3-hydroxymethyl pentenal unit is one of the key structural cores in plenty of natural products and drug candidates with significant biological activities. However, very few synthetic methodologies for the facile construction of the related skeletons have been reported to date. Herein, an elegant iridium-catalyzed asymmetric cascade allylation/retro-Claisen reaction of readily available β-diketones with VEC was successfully developed, and a wide range of functionalized chiral 3-hydroxymethyl pentenal derivatives could be prepared in good yields with excellent enantioselectivities. Various 1,3-diketones and functionalized ketones containing different electron-withdrawing groups on the β-position were well tolerated as outstanding partners with high reactivity and excellent regio-/chemo-/enantioselectivity. The synthetic utility of product chiral 3-hydroxymethyl pentenal derivatives was well shown through gram-scale transformation, hydrogenation, cyclopropanation, hydroboration, and olefin metathesis. Moreover, this elegant protocol demonstrated synthetic applications in the concise synthesis of synthetically useful chiral building block ( S )-Taniguchi lactone and the formal synthesis of natural product cytisine. A rational reaction pathway was proposed based on the experimental results and control experiments.

Topics & Concepts

ChemistryCombinatorial chemistryEnantioselective synthesisHydroxymethylNatural productKetoneOlefin fiberCatalysisOrganic chemistryAsymmetric Synthesis and CatalysisCatalytic C–H Functionalization MethodsAsymmetric Hydrogenation and Catalysis
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