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Phosphine-CatalyzedEnantioselective Intramolecular3+2 Annulations To Generate Fused Ring Systems

机译:磷化氢催化对映选择性分子内3 + 2生成融合环系统的通知

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摘要

Substantial progress has been described in the development of asymmetric variants of the phosphine-catalyzed intermolecular [3+2] annulation of allenes with alkenes; however, there have not been corresponding advances for the intramolecular process, which can generate a higher level of complexity (an additional ring and stereocenter(s)). In this study, we describe the application of chiral phosphepine catalysts to address this challenge, thereby providing access to useful scaffolds that are found in bioactive compounds, including diquinane and quinolin-2-one derivatives, with very good stereoselectivity. The products of the [3+2] annulation can be readily transformed into structures that are even more stereochemically rich. Mechanistic studies are consistent with β addition of the phosphepine to the allene being the turnover-limiting step of the catalytic cycle, followed by a concerted [3+2] cycloaddition to the pendant olefin.
机译:在膦催化烯与烯烃的分子间[3 + 2]环烯化反应的不对称变体的开发中,已取得了实质性进展。然而,分子内过程还没有相应的进展,它可以产生更高水平的复杂性(额外的环状和立体中心)。在这项研究中,我们描述了手性磷脂碱催化剂的应用,以解决这一挑战,从而提供了在具有良好立体选择性的生物活性化合物(包括二喹烷和喹啉-2-酮衍生物)中发现的有用支架的途径。 [3 + 2]环空的产物可以很容易地转化为立体化学更丰富的结构。机理研究与将磷杂环丁烷添加到丙二烯中是催化循环的周转限制步骤,然后将[3 + 2]环加成环加到侧链烯烃上是一致的。

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