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Cyanthiwigin Natural Product Core as a Complex Molecular Scaffold for Comparative Late-Stage C–H Functionalization Studies

机译:Cyanthigin天然产品核心作为比较晚期C-H官能化研究的复杂分子支架

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摘要

The desire for maximally efficient transformations in complex molecule synthesis has contributed to a surge of interest in C–H functionalization methods development in recent years. In contrast to the steady stream of methodological reports, however, there are noticeably fewer studies comparing the efficacies of different C–H functionalization protocols on a single structurally intricate substrate. Recognizing the importance of heteroatom incorporation in complex molecule synthesis, this report discloses a comparative examination of diverse strategies for C–O, C–N, and C–X bond formation through late-stage C–H oxidation of the tricyclic cyanthiwigin natural product core. Methods for allylic C–H acetoxylation, tertiary C–H hydroxylation, tertiary C–H amination, tertiary C–H azidation, and secondary C–H halogenation are explored. These efforts highlight the robustness and selectivities of many well-established protocols for C–H oxidation when applied to a complex molecular framework, and the findings are relevant to chemists aiming to employ such strategies in the context of chemical synthesis.
机译:复杂分子合成中最大有效转化的需求有助于近年来C-H官能化方法的兴趣激增。然而,与方法报告的源源性报告相比,在比较不同的C-H官能化方案对单个结构复杂衬底的效果比较较少的研究。认识到杂原子掺入在复杂分子合成中的重要性,本报告公开了通过三环Cyanthwigin天然产品核的后期C-H氧化的C-O,C-N和C-X键形成的各种策略的对比检查。探讨了烯丙基C-H乙酰乙酰化,叔C-H羟基化,叔C-H胺化,叔C-H叠氮化和次级C-H卤素的方法。当应用于复杂的分子框架时,这些努力突出了许多良好的C-H氧化方案的鲁棒性和选择性,并且研究结果与化学家相关,旨在在化学合成的背景下使用这种策略。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2018年第6期|共11页
  • 作者单位

    Division of Chemistry and Chemical Engineering California Institute of Technology Pasadena California 91125 United States;

    Department of Chemistry Stanford University Stanford California 94305 United States;

    Department of Chemistry Stanford University Stanford California 94305 United States;

    Department of Chemistry Stanford University Stanford California 94305 United States;

    Division of Chemistry and Chemical Engineering California Institute of Technology Pasadena California 91125 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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