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New methodologies for the synthesis of organophosphorus compounds .

机译:合成有机磷化合物的新方法。

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摘要

The work presented in this dissertation focus on the development of new methodologies for the preparation of organophosphorus compounds. A review of the most relevant literature in terms of the preparative methodologies and reactivity of H-phosphinic acid, phosphonic acids and phosphine-borane derivatives is provided in Chapter I. The following chapter describes the addition of hypophosphorous compounds to unsaturated substrates in the presence of metal-catalysts or radical initiators. A novel alkyne hydrophosphinylation catalyzed by nickel chloride or its hydrate, in the absence of added ligand, was discovered and explored in the synthesis of various important organophosphorus compounds. The AIBN-initiated radical addition of alkyl phosphinates to alkenes and alkynes provides alkyl-H-phosphinates in good yield and more importantly offers one of the best synthetic approach for the preparation of trans-alkenylphosphinates. Straightforward application to the synthesis of biologically active GABA (gamma-aminobutyric acid) analogs using AIBN-initiated radical hydrophosphinylation is also demonstrated. The synthesis of novel GABA analogs using methods developed in the Montchamp group and their biological evaluation is discussed in Chapter III. In Chapter IV the synthesis of a various functionalized organophosphorus compounds via organoboranes is reported. In some cases, selective migration of one group attached to boron can be observed. Phosphonite-borane complexes are introduced as novel synthons for the synthesis of phosphinic esters. The synthesis and the reactivity of these novel complexes are expanded in Chapter V.
机译:本文提出的工作主要集中在有机磷化合物制备新方法的开发上。第一章提供了有关H-次膦酸,膦酸和膦-硼烷衍生物的制备方法和反应性的最相关文献的综述。下一章介绍了在存在H-次膦酸的情况下向不饱和底物中添加次磷酸化合物的方法。金属催化剂或自由基引发剂。在不添加配体的情况下,发现并探索了由氯化镍或其水合物催化的新型炔烃氢膦基化反应,并在各种重要的有机磷化合物的合成中进行了探索。由AIBN引发的烷基次膦酸酯的自由基加成至烯烃和炔烃中,烷基-H-次膦酸酯的收率良好,更重要的是为制备反式链烯基次膦酸酯提供了最佳的合成方法之一。还证明了使用AIBN引发的自由基氢次膦酰化技术可直接应用于合成生物活性的GABA(γ-氨基丁酸)类似物。第三章讨论了使用Montchamp研究小组开发的方法合成新型GABA类似物及其生物学评估。在第四章中,报道了通过有机硼烷合成各种官能化的有机磷化合物。在某些情况下,可以观察到一个附着在硼上的基团的选择性迁移。引入膦-硼烷配合物作为合成次膦酸酯的新型合成子。第五章扩展了这些新型复合物的合成和反应性。

著录项

  • 作者

    Antczak, Monika I.;

  • 作者单位

    Texas Christian University.;

  • 授予单位 Texas Christian University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 276 p.
  • 总页数 276
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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