首页> 外文学位 >Part I: Ring-Rearrangement Metathesis of Himbert Arene-Allene Cycloadducts for the Rapid, Modular Construction of Complex Molecular Scaffolds. Part II: Application of Zincke Aldehydes Toward the Synthesis of Gelsemine.
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Part I: Ring-Rearrangement Metathesis of Himbert Arene-Allene Cycloadducts for the Rapid, Modular Construction of Complex Molecular Scaffolds. Part II: Application of Zincke Aldehydes Toward the Synthesis of Gelsemine.

机译:第一部分:Himbert Arene-Allene缩合物的环重排易位,用于复杂分子支架的快速,模块化构建。第二部分:锌醛在胶体明胶合成中的应用。

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摘要

Developing new synthetic methods and strategies is an important area of research in organic chemistry. Especially useful are transformations that rapidly and rationally generate complex molecular architectures, with multiple new bonds and new stereocenters, from simple, achiral and modular precursors. This dissertation discusses the synthetic investigation and exploitation of two such reactions.;In PART I, the intramolecular Diels--Alder (IMDA) reaction of aromatic dienes and allene dienophiles, utilized in conjunction with ring-rearrangement metathesis (RRM) to prepare angularly-fused polycyclic lactams, is discussed. The mechanism of the IMDA reaction was investigated with the aid of computational molecular modeling. The reaction was determined to proceed through a concerted mechanism; however, competing radical pathways accounted for stereochemical infidelity and fragmentation observed for some substrates.;An improved, modular synthesis of the precursors was developed to directly couple aromatic amines with the allene fragment precursor, which allowed for the preparation of a small library of heterocyclic compounds. This two-step protocol generates topologically interesting structures, containing two or more new rings, and two new sp3 stereocenters. Computational modeling also guided the development of the unknown analogous reaction for allenyl ketone substrates, which yield carbocyclic products.;Unexpected stereoselectivity and reactivity observations were made in the alkene metathesis reaction, which could not be readily explained. Computational studies were able to elucidate a subtle yet fundamental relationship between reaction mechanism and length of alkene tether in these types of substrates.;In PART II, efforts toward the synthesis of the alkaloid natural product gelsemine are discussed. The synthetic strategy employs a Zincke aldehyde rearrangement/IMDA cascade previously developed by the Vanderwal lab. Using 4-phenylpyridine as a model system, the expected transformation successfully gives an advanced synthetic intermediate lacking only the oxindole substructure, and the key C3--O4 and C5--C16 bonds present in the target. Elaboration of this intermediate toward the target is detailed.;A number of protected 4-(2-aminophenyl)pyridine analogues were prepared to facilitate oxindole formation and circumvent later stage complications that arose in the model system. These compounds all either failed to undergo Zincke salt formation, pyridinium ring-opening, or subsequent rearrangement/IMDA, thus delineating the synthetic boundaries of this type of chemistry.
机译:开发新的合成方法和策略是有机化学研究的重要领域。从简单的,非手性的和模块化的前驱体快速合理地生成具有多个新键和新立体中心的复杂分子结构的转化,尤其有用。本文讨论了两种反应的综合研究和开发。在第一部分中,芳族二烯和丙二烯亲二烯体的分子内Diels-Alder反应(IMDA)与环重整易位(RRM)结合使用以制备有角度的-讨论了稠合的多环内酰胺。借助计算分子模型研究了IMDA反应的机理。确定该反应是通过协调机制进行的;然而,竞争性自由基途径导致了某些底物的立体化学不忠和断裂。改进了前体的模块合成,将芳族胺与丙二烯片段前体直接偶联,从而制备了一个小的杂环化合物库。此两步协议生成了有趣的拓扑结构,其中包含两个或多个新的环以及两个新的sp3立体中心。计算模型还指导了烯丙基酮底物的未知类似反应的发展,该反应会生成碳环产物。烯烃复分解反应中发生了意想不到的立体选择性和反应性观察,这很难解释。计算研究能够阐明这些类型的底物中反应机理与烯烃系链长度之间的微妙而基本的关系。在第二部分中,讨论了对生物碱天然产物明胶的合成的努力。合成策略采用了范德华实验室之前开发的锌醛重排/ IMDA级联反应。使用4-苯基吡啶作为模型系统,预期的转化成功地给出了仅具有羟吲哚亚结构以及目标中存在的关键C3--O4和C5--C16键的高级合成中间体。详细说明了该中间体向目标的加工。;制备了许多受保护的4-(2-氨基苯基)吡啶类似物,以促进羟吲哚的形成并避免模型系统中出现的后期并发症。这些化合物都没有经历锌盐形成,吡啶鎓开环或随后的重排/ IMDA,从而划定了这种化学方法的合成边界。

著录项

  • 作者

    Lam, Jonathan K.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 877 p.
  • 总页数 877
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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