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Synthesis and characterization of cross-conjugated macrocycles and exploratory study of their organometallic chemistry.

机译:交叉共轭大环化合物的合成,表征及其有机金属化学的探索性研究。

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摘要

This thesis covers the synthesis, characterization and physical studies of cross-conjugated macrocycles, expanded radialenes, as well as their related derivatives. The main synthetic protocol that is used throughout this thesis is based on the Pd-mediated Sonogashira cross coupling reaction of a desilylated iso-polydiacetylene with a dibromoolefin.;At the same time, the use of tetrabromoethene in analogous Sonogashira cross coupling reactions afforded bisexpanded radialenes and radiaannulenes that exhibited interesting physical properties according to UV-vis spectroscopy and cyclic voltammetric analysis.;This thesis also covers some interesting results, in particular, for [3]expanded radialenes that undergo cycloaddition reactions. As well, physical studies of the target radialenes show that as the macrocycles become more strained, they exhibit more unique and unexpected electronic and optical properties.;Having the first series of the radialenes in hand, the synthetic plan shifted towards the synthesis of functional expanded radialenes, which were produced in good to very good yields. In particular, the existence of a [4]expanded radialene carrying triisopropylsilylethynyl groups as exocyclic substituents provided an opportunity for derivatization of the expanded radialene framework.;To initiate the synthesis, a series of [3]--, [4]--, and [5]expanded radialenes was synthesized, characterized, and studied by UV-vis spectroscopy, electrochemistry, and solid-state analysis. The results confirm the macrocycles are achievable in reasonable yields and suitable for further physical studies without any concerns for their stability in the solid or solution phase.;The general protocol for radialene synthesis was also applied using tetrabromides of anthracenylidene and pentacenylidene in Sonogashira reactions. These efforts afforded structurally unique bisexpanded radialene and radiaannulene products.;Because of their shape and structure, radialenes have potential for use in organometallic chemistry or as ligands in inorganic chemistry. Exploratory studies have been focused on [3]- and [4]expanded radialenes. By all accounts, [3]radialenes reacted more easily with selected precursors such Pt(PPh 3)4 and Co2(CO)8.;Throughout this thesis, all the major radialene frameworks are established in terms of solid-state structures by X-ray crystallography. Finally, electrochemical analyses show that the new series radialenes reported in this work are generally reduced at higher potentials when compared to the previous generation of expanded radialenes based on butadiynyl building blocks.
机译:本论文涵盖了交叉共轭大环化合物,扩展的径向烯及其相关衍生物的合成,表征和物理研究。本论文中使用的主要合成方案是基于Pd介导的甲硅烷基化异聚二乙炔与二溴代烯烃的Sonogashira交叉偶联反应;同时,在类似的Sonogashira交叉偶联反应中使用四溴乙烯可提供双膨胀的径向烯通过紫外-可见光谱和循环伏安分析显示出有趣的物理性质。以及本论文还涵盖了一些有趣的结果,特别是对于[3]发生环加成反应的膨松烯。同样,对目标星形烯的物理研究表明,随着大环化合物的拉伸变得越来越严格,它们将显示出更多独特和出乎意料的电子和光学性质。;在手握第一批星形烯的情况下,合成计划已转向功能扩展的合成以高至非常高的产率生产的烯。特别是,[4]带有三异丙基甲硅烷基乙炔基作为环外取代基的膨胀的烯键的存在为衍生的膨胀的烯键骨架提供了机会。;要开始合成,需要一系列的[3]-,[4]-,并通过紫外-可见光谱,电化学和固相分析研究了[5]膨胀的径向烯,对其进行了表征和研究。结果证实了大环化合物可以以合理的收率获得,并且适合于进一步的物理研究,而无需考虑它们在固相或溶液相中的稳定性。; radial烯合成的一般方案也被用于蒽醌和戊烯基的四溴化物在Sonogashira反应中。这些努力提供了结构上独特的双膨胀径向烯和拉环戊烯产品。由于它们的形状和结构,径向烯具有用于有机金属化学或用作无机化学配体的潜力。探索性研究集中在[3]-和[4]膨胀的烯基上。众所周知,[3] ale原子与选定的前体(例如Pt(PPh 3)4和Co2(CO)8)反应更容易。在整个论文中,所有主要的radial烯骨架都是通过X-射线晶体学。最后,电化学分析表明,与上一代基于丁二炔基砌块的膨胀型烯烯相比,这项工作中报道的新系列烯烯通常在较高电势下被还原。

著录项

  • 作者

    Gholami, Mojtaba.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 483 p.
  • 总页数 483
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学 ;
  • 关键词

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