sm2催化的烷基侯烷酮与烯烃偶联制备降硼烷。

Debayan Roy, Jack I Mansell, Giorgia Barison, Song Yu, Rocco Katavic, Ciro Romano, Nikolas Kaltsoyannis, David John Procter
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引用次数: 0

摘要

涉及到菌株释放的交叉偶联策略最近在复杂分子框架的构建中获得了显著的关注,特别是在制备用于药物化学的生物同位体的背景下。虽然环丙烷和双环[1.1.0]丁烷(BCBs)的反应性已经得到了广泛的研究,但更高的同源物正在成为有价值的合成底物。例如,双环[2.1.0]戊烷或房烷酮的裂解和偶联方法显示出前景,但目前在底物范围内受到限制。在这里,我们描述了一种温和的,原子经济的,二碘化钐(SmI2)催化的烷基和芳基housane酮与烯烃的断裂和偶联,可以获得功能化的降龙骨烷结构基序,这些结构基序不容易通过经典的环加成方法获得,并且具有很大的进一步操作潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SmI2-Catalyzed Coupling of Alkyl Housane Ketones and Alkenes in an Approach to Norbornanes.

Cross-coupling strategies involving strain-release have gained significant recent attention for the construction of complex molecular frameworks, particularly in the context of preparing bioisosteres for medicinal chemistry. While the reactivity of cyclopropanes and bicyclo[1.1.0]butanes (BCBs) has been extensively studied, higher homologues are emerging as valuable substrates for synthesis. For example, methods for the fragmentation and coupling of bicyclo[2.1.0]pentane, or housane, ketones show promise, but are currently limited in substrate scope. Here, we describe a mild, atom-economical, samarium diiodide (SmI2) catalyzed fragmentation and coupling of alkyl and aryl housane ketones with alkenes that grants access to functionalized norbornane structural motifs, not easily accessible by classical cycloaddition approaches, and with considerable potential for further manipulation.

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