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串联樱井-羟醛加成反应作为构建结构复杂碳环的一条途径。

Tandem Sakurai-aldol addition reactions as a route to structurally complex carbocycles.

作者信息

Stevens Benjamin D, Nelson Scott G

机构信息

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

出版信息

J Org Chem. 2005 May 27;70(11):4375-9. doi: 10.1021/jo050225y.

Abstract

Tandem intramolecular Sakurai-aldol reactions provide a concise and highly diastereoselective route to substituted cyclohexenone derivatives. The cyclization substrates are readily obtained using olefin isomerization-Claisen rearrangement (ICR) reactions to prepare the key chiral allyl silane precursors. The Claisen reaction products are elaborated to the chiral Sakurai-aldol substrates by an efficient two-step sequence involving vinyl organometallic-aldehyde addition and oxidation of the resulting alcohol. The reaction of the resulting enones with TiCl(4) elicits a highly stereoselective allyl silane conjugate addition to produce a trichlorotitanium enolate as the reaction intermediate; intermolecular trapping of the enolate with an aldehyde provides pentasubstituted cyclohexanone derivatives in which the annulation reaction establishes four stereocenters and two new C-C bonds. A fully intramolecular variant of the Sakurai-aldol reaction that creates four stereocenters, two new C-C bonds, and establishes two new carbocyclic rings is also described.

摘要

串联分子内樱井-羟醛反应为取代环己烯酮衍生物提供了一条简洁且高度非对映选择性的合成路线。环化底物可通过烯烃异构化-克莱森重排(ICR)反应轻松制得,以制备关键的手性烯丙基硅烷前体。克莱森反应产物通过一个高效的两步序列转化为手性樱井-羟醛底物,该序列包括乙烯基有机金属试剂与醛的加成以及所得醇的氧化。所得烯酮与TiCl(4)反应引发高度立体选择性的烯丙基硅烷共轭加成,生成三氯钛烯醇盐作为反应中间体;烯醇盐与醛的分子间捕获反应提供了五取代环己酮衍生物,其中环化反应构建了四个立体中心和两个新的C-C键。还描述了一种完全分子内的樱井-羟醛反应变体,该反应构建了四个立体中心、两个新的C-C键并形成了两个新的碳环。

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