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The intramolecular Buchner reaction of alpha-diazo-beta-ketonitriles: development and application to the total synthesis of (+)-salvileucalin B.

机译:α-重氮-β-酮腈的分子内布赫纳反应:发展和应用于(+)-salvileucalin B的全合成。

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摘要

Since its discovery in 1896, the Buchner reaction has fascinated chemists for more than a century. The highly reactive nature of the carbene intermediates allows for facile dearomatization of stable aromatic rings, and provides access to a diverse array of cyclopropane and seven-membered ring architectures. The power inherent in this transformation has been exploited in the context of a natural product total synthesis and methodology studies.;The total synthesis work details efforts employed in the enantioselective total synthesis of (+)-salvileucalin B. The fully-substituted cyclopropane within the core of the molecule arises from an unprecedented intramolecular Buchner reaction involving a highly functionalized arene and an alpha-diazo-beta-ketonitrile. An unusual retro-Claisen rearrangement of a complex late-stage intermediate was discovered on route to the natural product.;The unique reactivity of alpha-diazo-beta-ketonitriles toward arene cyclopropanation was then investigated in a broader methodological study. This specific di-substituted diazo moiety possesses hitherto unreported selectivity in intramolecular Buchner reactions. This technology was enables the preparation of highly functionalized norcaradienes and cyclopropanes, which themselves undergo various ring opening transformations to afford complex polycyclic structures.;Finally, an enantioselective variant of the intramolecular Buchner reaction is described. Various chiral copper and dirhodium catalysts afforded moderate stereoinduction in the cyclization event.
机译:自从1896年发现布赫纳反应以来,化学家着迷了一个多世纪。卡宾中间体的高反应性使稳定的芳族环易于脱芳香化,并提供了多种多样的环丙烷和七元环体系结构。在天然产物总合成和方法学研究的背景下,已经利用了这种转化的内在动力。总合成工作详述了对(+)-salvileucalin B的对映选择性总合成中所用的努力。分子的核心来自空前的分子内布氏反应,涉及高度官能化的芳烃和α-重氮-β-酮腈。在向天然产物的途中发现了复杂的后期中间体的不寻常的Retro-Claisen重排。;然后在更广泛的方法学研究中研究了α-重氮-β-酮腈对芳烃环丙烷化的独特反应性。该特定的二取代重氮部分在分子内布赫纳反应中具有迄今未报道的选择性。该技术能够制备高度官能化的正二十碳二烯和环丙烷,它们本身会经历各种开环转化以提供复杂的多环结构。最后,描述了分子内布氏反应的对映选择性变体。各种手性铜和二铑催化剂在环化过程中提供了适度的立体诱导。

著录项

  • 作者

    Nani, Roger Rauhauser.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry General.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 547 p.
  • 总页数 547
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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