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High-order dipolar annulations with metal-containing reactive dipoles

Zhang, Mao-Mao; Qu, Bao-Le; Shi, Bin; Xiao, Wen-Jing; Lu, Liang-Qiu*
Science Citation Index Expanded
中国科学院

摘要

Medium-sized heterocycles are widespread among a spectrum of structurally intriguing and biologically significant natural products and synthetic pharmaceuticals. Metal-catalyzed high-order dipolar annulations resembling reactions of metal-containing reactive dipoles with dipolarophiles constitute a highly efficient and flexible strategy for constructing medium-sized heterocycles. Mechanistically, these annulation reactions usually proceeding through stepwise pathways are different from the classic high-order pericyclic reactions that follow the Woodward-Hoffman rules. More significantly, asymmetric high-order dipolar annulations using chiral organometaic catalysts have been proven successful for constructing chiral medium-sized heterocycles with high enantio- and diastereoselectivity. This review highlights the impressive advances in this area and is focused on the reactivity, scope, mechanisms and applications of high-order dipolar annulation reactions.

关键词

CATALYZED 4+3 CYCLOADDITION CONTAINING CARBONYL YLIDES 1,3-DIPOLAR 3+6 CYCLOADDITION DONOR-ACCEPTOR CYCLOPROPANES ENANTIOSELECTIVE SYNTHESIS VINYLETHYLENE CARBONATES AZOMETHINE YLIDES EFFICIENT CONSTRUCTION ASYMMETRIC-SYNTHESIS 4C+3C CYCLOADDITION