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Gallium(III)-Catalyzed Cycloisomerization Approach Toward C 20-Diterpenoid Alkaloids.

机译:镓(III)催化的C 20-二萜生物碱环化方法。

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摘要

This dissertation discusses our gallium(III)-catalyzed cycloisomerization approach toward the hetidine and hetisine-type diterpenoid alkaloids. The first chapter presents the background of the gallium(III)-catalyzed cycloisomerization reaction. The initial reports for the skeletal rearrangements of 1,6-enyned will be presented and the expansion of the substrate scope to include indenyl alkynes to provide cycloheptadiene products will be discussed. The chapter will conclude with the application of the indenyl alkyne cycloisomerization reaction to the synthesis of several icetexane diterpenoids.;The second chapter focuses on the structure and classification of the C20- diterpenoid alkaloids. The biological activity of selected alkaloids will be discussed. Several approached toward the hetidine and hetisine cores will also be presented along with the two completed total syntheses of the hetisine-type diterpenoid alkaloid nominine.;Chapter three presents our approach toward the hetidine core using the gallium(III)- catalyzed cycloisomerization strategy. Our retrosynthetic analysis of a key-intermediate resembling the hetidine core, that we proposed could be used to access both hetidine and hetisine-type natural products, will be discussed. Synthesis of the cycloisomerization substrate will be presented along with the elaboration of the resulting cycloheptadiene to an intermediate similar to that used by Gin and Peese in their synthesis of nominine. Finally, an oxidative dearomatization approach toward the [2.2.2] bicycle and completion of the hetidine core will be presented.;The final chapter discusses the elaboration of the hetidine core to dihydronavirine A in an attempt to access the hetidine-type natural product navirine A. An interesting C-C bond cleaving reaction, which provides the atisine core from the hetidine core, was also explored.
机译:本文讨论了我们的镓(III)催化环己异构和庚烷类二萜类生物碱的异构化方法。第一章介绍了镓(Ⅲ)催化的环异构化反应的背景。将介绍有关1,6-烯键的骨架重排的初步报道,并将讨论底物范围的扩大,以包括茚基炔烃以提供环庚二烯产物。本章将以茚基炔烃环异构化反应在几种冰ane烷二萜的合成中的应用作为总结。第二章着重介绍C20-二萜生物碱的结构和分类。将讨论所选生物碱的生物活性。还将介绍几种针对庚啶和庚啶核心的方法,以及两种完整的庚烷类二萜类生物碱的总合成方法。第三章介绍了我们使用镓(III)催化的环异构化策略制备庚啶核心的方法。我们将讨论我们提议的一种可用于获取庚啶和鸟嘌呤类天然产物的类似庚烷核心的关键中间体的逆合成分析。将介绍环异构化底物的合成,以及将所得的环庚二烯精制为类似于Gin和Peese在其人称合成中所使用的中间体的中间体。最后,将介绍一种针对[2.2.2]自行车的氧化脱芳香化方法和庚啶核心的完成。;最后一章讨论了将庚啶核心修饰为二氢鸟嘌呤A的尝试,以尝试获得庚啶型天然产物萘韦林A.还研究了有趣的CC键裂解反应,该反应从庚啶核心提供了atisine核心。

著录项

  • 作者

    Hamlin, Amy Michelle.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Organic chemistry.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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