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Study of heteroaromatic enediyne and substituted benzothiophene synthesis with relative reactivity of substituted aryl iodides in the Sonagashira reaction.

机译:在Sonagashira反应中研究杂芳烯二炔和取代苯并噻吩的合成,以及相对于取代芳基碘的反应性。

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摘要

Enediyne compounds have captured the imagination of chemists since their discovery as a class of natural products. Because of their cytotoxicity, these compounds are not suitable for use in cancer treatment. As a result, chemists have aimed to reduce their toxicity, improve stability and elucidate the mechanism of their cyclization reaction. The Sonogashira coupling reaction is used to synthesize a number of heteroaromatic enediynes and has been examined. By coupling a number of alkynes with 2,3-dibromothiphene a number of corresponding disubstituted enediynes were produced. In order to get fused bicyclic heteroaromatic products both thermal and photochemical Bergman cyclizations have been performed with these enediynes. To date, the attempted cyclizations have not been successful.; Beside this, a series of competitive reactions was carried out to determine the relative reactivity of substituted aryl iodides in the Sonogashira reactions. These reactions were carried out in co-catalyst system composed of Pd/CuI. The competitive reactions between iodobenzene and a number of 3- and 4-substituted iodobenzenes provided relative rates which were compared to the theoretical electron densities of the iodide-bearing carbon. Generally, electron withdrawing substituents in the para- and meta-positions increased the reactivity, while donating substituents decreased the rate of reaction. It was found that resonance effects have a greater effect on reactivity than inductive effects.
机译:自从烯属炔化合物被发现为一类天然产物以来,它们就吸引了化学家的想象。由于它们的细胞毒性,这些化合物不适合用于癌症治疗。结果,化学家旨在降低其毒性,提高稳定性并阐明其环化反应的机理。 Sonogashira偶联反应用于合成许多杂芳族烯二炔,并已进行了研究。通过将许多炔烃与2,3-二溴噻吩偶联,产生了许多相应的二取代的二炔。为了得到稠合的双环杂芳族产物,已经用这些烯二炔进行了热化学和光化学Bergman环化。迄今为止,尝试的环化尚未成功。除此之外,还进行了一系列竞争反应以确定Sonogashira反应中取代的芳基碘化物的相对反应性。这些反应在由Pd / CuI组成的助催化剂体系中进行。碘苯与许多3-和4-取代的碘苯之间的竞争反应提供了相对速率,该速率与含碘化物碳的理论电子密度进行了比较。通常,对位和间位的吸电子取代基提高反应活性,而给体取代基降低反应速率。发现共振效应对反应性的影响大于感应效应。

著录项

  • 作者

    Hossain, Mohammad Selim.;

  • 作者单位

    Lakehead University (Canada).;

  • 授予单位 Lakehead University (Canada).;
  • 学科 Chemistry Inorganic.
  • 学位 M.Sc.
  • 年度 2006
  • 页码 76 p.
  • 总页数 76
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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