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氧化碳-碳键形成反应中的结构-反应性关系:一种温和且高效的立体选择性合成2,6-二取代四氢吡喃酮的方法。

Structure-reactivity relationships in oxidative carbon-carbon bond forming reactions: a mild and efficient approach to stereoselective syntheses of 2,6-disubstituted tetrahydropyrones.

作者信息

Wang Lijun, Seiders John R, Floreancig Paul E

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.

出版信息

J Am Chem Soc. 2004 Oct 6;126(39):12596-603. doi: 10.1021/ja046125b.

Abstract

Homobenzylic ethers with pendent enol acetate nucleophiles undergo highly efficient cleavage reactions followed by 6-endo cyclizations to form 2,6-disubstituted tetrahydropyrones with excellent stereocontrol at room temperature in the presence of the mild oxidant ceric ammonium nitrate. Cyclizations proceed through either stabilized or nonstabilized oxocarbenium ions. Structure-reactivity relationships are presented to provide a predictive guide for the design of radical cation cleavage processes. Unique sequences for preparing cyclization substrates based on stereoselective Lewis acid mediated acetal openings have been developed for the synthesis of complex substrates that are suitable for applications to the synthesis of biologically active natural products.

摘要

带有烯醇乙酸酯亲核基团侧链的高苄基醚在温和氧化剂硝酸铈铵存在下,于室温下经历高效的裂解反应,随后进行6-内型环化反应,以形成具有出色立体控制的2,6-二取代四氢吡喃。环化反应通过稳定或不稳定的氧鎓离子进行。本文阐述了结构-反应性关系,为自由基阳离子裂解过程的设计提供预测指南。基于立体选择性路易斯酸介导的缩醛开环反应,已开发出用于制备环化底物的独特序列,用于合成适用于生物活性天然产物合成的复杂底物。

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