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The allenic carbocyclization reaction of allene-ynes: Progress towards the syntheses of fumagillol and ovalicin.

机译:亚烯炔的烯丙基碳环化反应:烟曲霉酚和卵磷脂的合成进展。

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摘要

The Rh(I)-catalyzed allenic carbocyclization reaction is a powerful strategy for the assembly of densely functionalized cyclic cross-conjugated trienes. This methodology exhibits excellent functional group compatibility, and allows for the construction of five-, six-, and seven-membered rings in high yields from allene-yne precursors. In this thesis, progress towards the total synthesis of (--)-fumagillol and (--)-ovalicin is reported. The entire carbocyclic skeleton of both structurally related natural products has been synthesized in a single synthetic transformation via an allenic carbocyclization reaction. It is anticipated that the allylic hydroxyl group of the functionalized cross-conjugated can be used for the chemo- and stereoselective installation of epoxides and hydroxyl groups incorporated in both sesquiterpenes.;The constitutional group selectivity of the beta-hydride elimination step in the allenic carbocyclization reaction has been investigated. We found that TMS-alkynyl allenes with an appending isobutylene group can be reacted under Rh(I)-catalyzed allenic carbocyclization reaction conditions to afford regioisomerically pure cross-conjugated trienes in good yields. The examples within, indicate that a coordinating alkene can be incorporated into the allene-yne substrate to control the beta-hydride elimination step of the cyclization reaction to yield trienes with a 1,1-disubstituted alkene side chain.
机译:Rh(I)催化的烯丙基碳环化反应是组装紧密官能化的环状交叉共轭三烯的强大策略。该方法学显示出优异的官能团相容性,并允许以高产率从丙二烯-炔前体构建五元,六元和七元环。本论文报道了全合成(-)-烟曲霉酚和(-)-卵磷脂的进展。两种结构相关的天然产物的整个碳环骨架都是通过艾伦碳环化反应以单一合成转化方式合成的。可以预期,官能化交联的烯丙基羟基可用于化学和立体选择性地安装在两个倍半萜烯中的环氧化物和羟基的化学和立体安装。烯丙碳环化中β-氢化物消除步骤的结构基团选择性反应已被调查。我们发现,具有附加异丁烯基的TMS-炔基丙二烯可以在Rh(I)催化的烯丙碳环化反应条件下反应,以良好的收率提供区域异构纯的交叉共轭三烯。其中的实施例表明,可以将配位烯烃掺入到丙二烯-炔基底物中以控制环化反应的β-氢化物消除步骤,以产生具有1,1-二取代的烯烃侧链的三烯。

著录项

  • 作者

    DeForrest, Jolie Elaine.;

  • 作者单位

    University of Pittsburgh.;

  • 授予单位 University of Pittsburgh.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 291 p.
  • 总页数 291
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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