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Advances in Heterocyclic Synthesis through Ring Expansions and Flow Chemistry

机译:通过环扩和流化学合成杂环的研究进展

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This dissertation comprises three chapters, which focus on the development of new synthetic methodologies and the construction of a screening collection.;An Application of the Schmidt Reaction: Construction of an Azasteroid Library. Ring expansion chemistry is a powerful way of introducing a heteroatom substituent into carbocyclic frameworks. However, such reactions are limited by the tendency of a given substrate to afford only one of the two rearrangement products or fail to achieve selectivity at all. These limitations may prove critical when seeking to carry out late-stage functionalization of natural products as starting points in drug discovery. In this chapter, a stereoelectronically controlled ring expansion sequence towards selective and flexible access to complementary ring systems derived from commercial or readily synthesized steroidal substrates of the A- and D-rings is described. A requisite intermediate in the reaction was leveraged to afford over one hundred isomerically pure analogs with spatial and functional diversity. This regiodivergent rearrangement, and the concept of using chiral reagents to effect regiocontrol in chiral natural products, adds value to late-stage natural product diversification programs.;New Variations of the Schmidt Reaction: A strong hydrogen-bond-donating solvent, hexafluoro-2-propanol (HFIP), was found improve the intermolecular reaction of ketones with trimethylsilyl azide and hydroxyalkyl azides. This study prompted the hypothesis for interrupting the classic Schmidt reaction with an added nucleophile reagent in HFIP. An extensive acid screen identified aluminum tribromide as a promoter for intercepting the Schmidt reaction iminium ion intermediate and combining it with subsequent reaction with 1,3,5-trimethoxybenzene to form substituted imines, enamides, and amines. This new variation of the Schmidt reaction provided access to unique heterocycles.;Enabling Chemistry Technologies: High-Temperature and High-Pressure Continuous Flow Chemistry. The synthetic applications of a high-temperature and high-pressure flow reactor were investigated. The Gould-Jacobs reaction, nucleophilic aromatic substitution reaction with amine nucleophiles, and tert-butyloxycarbonyl deprotection in flow were explored. The protocols developed were applied to the high-throughput preparation of small-molecule libraries, as well as reaction telescoping, automation, and scaling.
机译:本论文共分三章,重点研究了新的合成方法的发展和筛选馆藏的建设。;施密特反应的应用:氮杂甾体文库的构建。扩环化学是将杂原子取代基引入碳环骨架的有效方法。但是,这种反应受到给定底物仅提供两种重排产物之一或完全不能达到选择性的趋势的限制。当寻求进行天然产物的后期功能化作为药物发现的起点时,这些限制可能被证明是至关重要的。在这一章中,描述了一种立体电子控制的环扩展序列,该环向着选择性地和灵活地进入衍生自A环和D环的商业或易于合成的甾体底物的互补环系统的方向。利用反应中必需的中间体来提供一百多种具有空间和功能多样性的异构纯的类似物。这种区域发散性重排,以及使用手性试剂在手性天然产物中进行区域控制的概念,为后期天然产物多样化计划增加了价值。施密特反应的新变化:强力氢键提供溶剂六氟-2丙醇(HFIP)被发现可以改善酮与三甲基硅烷基叠氮化物和羟烷基叠氮化物的分子间反应。这项研究提出了假说,即在HFIP中添加亲核试剂会中断经典的Schmidt反应。广泛的酸筛选确定了三溴化铝为促进剂,用于拦截施密特反应的亚胺离子中间体,并将其与随后的与1,3,5-三甲氧基苯的反应合并以形成取代的亚胺,酰胺和胺。施密特反应的这一新变化提供了获得独特杂环的途径。启用化学技术:高温和高压连续流化学。研究了高温高压流动反应器的合成应用。探索了Gould-Jacobs反应,与胺类亲核试剂的亲核芳族取代反应以及流动中的叔丁氧羰基脱保护基。所开发的协议适用于小分子库的高通量制备,以及反应伸缩,自动化和缩放。

著录项

  • 作者

    Charaschanya, Manwika.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Pharmaceutical sciences.;Chemistry.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 430 p.
  • 总页数 430
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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