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Intramolecular Anodic Olefin Coupling Reactions: Using Radical Cation Intermediates to Trigger New Umpolung Reactions

机译:分子内阳极烯烃偶联反应:使用自由基阳离子中间体触发新的Umpolung反应

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Abstract: Anodic electrochemistry is a powerful tool for generating radical cation intermediates and initiating new cyclization reactions. Like most electrochemical reactions, the transformations involve umpolungs. In this review, recent studies examining the intramolecular coupling of radical cations derived from enol ethers, vinyl sulfides, and ketene acetals with carbon, oxygen, and nitrogen trapping groups are discussed to highlight their synthetic potential. 1 Introduction and Background 2 Arteannuins: A Backdrop for Discovery 3 A Detour: Ketene Acetals as Anodic Olefin Coupling Partners 4 Continuing the Detour: Ineleganolide and a Revised Working Model 5 Extending the Model: Nitrogen Trapping Groups 6 Back to Arteannuins: Completing the Ring Skeleton 7 Lactone Targets and a Couple of Final Points 8 Conclusions
机译:摘要:阳极电化学是产生自由基阳离子中间体和引发新环化反应的强大工具。像大多数电化学反应一样,这些转化也涉及到了蛋白修饰。在这篇综述中,最近的研究探讨了烯醇醚,乙烯基硫化物和乙烯酮缩醛衍生的自由基阳离子与碳,氧和氮捕获基团的分子内偶联,以突出其合成潜力。 1简介和背景2青蒿素:发现的背景3绕道而行:乙烯缩醛作为阳极烯烃偶联伙伴4继续绕行:依尼甘醇和经修订的工作模型5扩展模型:氮捕集剂组6回到青蒿素:完成环骨架7个内酯目标和几个终点8个结论

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