首页> 外文学位 >An exploration of the cycloaddition and oxidative dehydrogenation chemistry of SNS+ with 1,4-quinone derivatives and characterization of the corresponding hybrid quinone-thiazyl cations and radicals.
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An exploration of the cycloaddition and oxidative dehydrogenation chemistry of SNS+ with 1,4-quinone derivatives and characterization of the corresponding hybrid quinone-thiazyl cations and radicals.

机译:探索具有1,4-醌衍生物的SNS +的环加成和氧化脱氢化学,以及相应杂化醌-噻唑基阳离子和自由基的表征。

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摘要

The development of new and convenient synthetic routes to SNS + as the SbF6- salt from readily available starting materials has lead to the continued exploration of the versatile cycloaddition chemistry of SNS+. The cycloaddition chemistry of SNSMF6 (M = As, Sb) was successfully extended to the simple cross-conjugated 1,4-benzoquinone leading to the hydroquinone fused 1,3,2-dithiazolylium cation, as the MF6- salts in essentially quantitative yield. The hydroquinone fused 1,3,2-dithiazolylium derivative is a unique example of a thiazyl cation in the presence of both potentially labile and reactive hydroxyl functionalities that was subsequently oxidized to the 1,4benzoquinone fused 1,3,2-dithiazolylium cation by AsF5 in the presence of triethylamine (NEt3) in high yield. The combined oxidative dehydrogenation and cycloaddition chemistry of SNS+ with the hydroquinone fused 1,3,2-dithiazolylium cation in refluxing liquid SO2 led to the 1,4-benzoquinone bridged bis-1,3,2-dithiazolylium dication in moderate yield (ca. 60-65 %). Similarly, the 'one-pot' oxidative dehydrogenation and cycloaddition chemistry of SNS+ with 1,4-naphthaquinone under mild conditions led to the 1,4-naphthoquinone fused 1,3,2-dithiazolylium cation in high yield (ca. 87 %).;The reduction of the hydroquinone and quinone fused 1,3,2-dithiazolylium cations led to the expected 1,3,2-dithiazolyl radicals in solution, which were characterized by EPR. In contrast, the one electron reduction of the benzoquinone-bridged bis-1,3,2-dithiazolylium dication led to a unique zwitterionic semiquinone radical-cation. The 1,4-naphthaquinone fused 1,3,2-dithiazolyl radical is the first example of an isolable hybrid quinone-thiazyl radical and its full characterisation in the solid state is reported. The thermal decomposition of this radical (in vacuo) led to a novel 1,4-naphthaquinone fused polysulfane and a known 1,2,5-thiadiazole derivative.;The regio-selective cycloaddition of SNSSbF6 with 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ) in a 2:1 molar ratio in liquid SO2 led to the dicycloaddition of SNS+ exclusively at the nitrile functionality despite the presence of other potentially reactive unsaturated centers. In contrast, the cycloaddition of SNS+ as the Al(OC(CF3)3) 4- salt with DDQ led only to the monocycloaddition product, as identified by multinuclear NMR. The general thermodynamic trends for the cycloaddition chemistry of SNS+ as the MF6- and Al(OC(CF3)3)4- salts with multifunctional nitriles were established in all three phases by simple thermodynamic models based on DFT calculations and the volume-based thermodynamic (VBT) approach.
机译:从容易获得的起始原料中开发出新的,便捷的合成途径,以SbF6-盐的形式合成SNS +,已导致人们不断探索SNS +的通用环加成化学。 SNSMF6(M = As,Sb)的环加成化学已成功扩展至简单的交叉共轭1,4-苯醌,生成了对苯二酚稠合的1,3,2-二噻唑基阳离子,为基本上定量收率的MF6-盐。对苯二酚稠合的1,3,2-二噻唑基衍生物是噻唑阳离子的一个独特例子,它同时具有潜在的不稳定和反应性羟基官能团,随后被AsF5氧化为1,4,苯醌稠合的1,3,2-二噻唑基阳离子。在三乙胺(NEt3)的存在下高收率。在回流的液体SO2中,SNS +与对苯二酚稠合的1,3,2-二噻唑基阳离子的氧化脱氢和环加成化学的结合导致中等产率的1,4-苯醌桥联的bis-1,3,2-二噻唑基阳离子(ca. 60-65%)。同样,在温和条件下,SNS +与1,4-萘醌的“一锅法”氧化脱氢和环加成反应导致1,4-萘醌稠合的1,3,2-二噻唑基阳离子的产率很高(约87%)。对苯二酚和醌稠合的1,3,2-二噻唑基阳离子的还原导致溶液中预期的1,3,2-二噻唑基自由基,其特征为EPR。相比之下,苯醌桥接的bis-1,3,2-二噻唑基离子的一次电子还原导致了独特的两性离子半醌自由基阳离子。 1,4-萘醌稠合的1,3,2-二噻唑基是可分离的杂合醌-噻唑基的第一个例子,据报道其在固态下具有完整的特征。该自由基的热分解(在真空中)产生了一种新型的1,4-萘醌稠合的聚硫烷和一种已知的1,2,5-噻二唑衍生物。SNSSbF6与2,3-二氯-5的区域选择性环加成,尽管存在其他潜在的反应性不饱和中心,但液态SO2中摩尔比为2:1的6-dicyano-1,4-苯醌(DDQ)导致SNS +仅在腈官能团上发生二环加成。相反,如多核NMR所示,SNS +作为Al(OC(CF3)3)4-盐与DDQ的环加成反应仅导致单环加成产物。通过基于DFT计算和基于体积的热力学的简单热力学模型,在所有三个阶段中确定了SNS +作为具有多功能腈的MF6-和Al(OC(CF3)3)4-盐与MF6-和Al(OC(CF3)3)4-的环加成化学的一般热力学趋势。 VBT)方法。

著录项

  • 作者

    Mailman, Aaron.;

  • 作者单位

    University of New Brunswick (Canada).;

  • 授予单位 University of New Brunswick (Canada).;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 262 p.
  • 总页数 262
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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