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Synthesis, coordination chemistry, and reactivity of functionalized phosphines: Toward water-soluble macrocyclic phosphine complexes.

机译:官能化膦的合成,配位化学和反应性:走向水溶性大环膦配合物。

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摘要

Macrocyclic phosphine compounds have long been sought as ligands for transition metal complexes because of their strong binding properties. Despite considerable effort in this field, no general methods for synthesizing phosphine macrocycles or their complexes have been developed. This dissertation describes attempts to synthesize an iron complex with a water-soluble macrocyclic tetraphosphine ligand for use in separating nitrogen from natural gas. Chapter I reviews previous syntheses of macrocyclic phosphine ligands and their complexes, focusing on ligand synthesis, coordination chemistry, and demetallation of the complexes.;Chapter II reports on the synthesis of water-soluble secondary bidentate phosphine ligands, their coordination chemistry with iron(II), and attempts to use these complexes as templates for forming a macrocyclic iron-phosphine complex by reactions with carbon electrophiles.;Over the course of treating these iron complexes with various carbon electrophiles, an interesting reaction between bromomaleic anhydride and proton sponge was discovered. Chapter III explores the product, 4-maleicanhydrido-1,8-bis-(dimethylamino)naphthalene (MAPS). Due to its conjugated donor-acceptor network, which is disrupted upon protonation, MAPS acts as a colorimetric version of a proton sponge. The attachment of MAPS to amine-functionalized solid supports, forming solid-supported proton sponge reagents, is also described.;Chapter IV discusses the synthesis of an iron(II) complex of the water-soluble phosphine 1,2-bis(di(hydroxymethyl)phosphino)ethane (DHMPE). Although unbound hydroxymethylphosphines commonly react with NH-functional amines via the phosphorus Mannich reaction, this and other complexes of DHMPE do not undergo this reaction. Further investigation with hydroxymethylphosphine-boranes suggests that the currently-accepted mechanism of the phosphorus Mannich reaction is incorrect, and an alternate mechanism is proposed.;Chapter V discusses the synthesis and functionalization of copper(I) complexes of water-soluble phosphines. Unlike the complexes described in Chapter I, these complexes readily react with alpha,o-dihalides or di(acyl chloride)s, forming complexes whose mass spectra correspond to those with macrocyclic phosphine ligands. Unlike most macrocyclic tetraphosphine complexes, these complexes can be demetallated by treatment with sulfide. Finally, a new synthesis of water-soluble macrocycles, based on lessons learned during the course of these investigations, is proposed.;This dissertation includes previously published and unpublished co-authored material.
机译:大环膦化合物因其强大的结合性能而长期以来一直被用作过渡金属配合物的配体。尽管在该领域付出了巨大的努力,但尚未开发出用于合成膦大环或其配合物的一般方法。本论文描述了尝试合成具有水溶性大环四膦配体的铁配合物用于从天然气中分离氮的方法。第一章回顾了大环膦配体及其配合物的先前合成方法,重点是配体的合成,配位化学和配合物的脱金属作用。第二章报道了水溶性仲二齿膦配体的合成及其与铁的配位化学。 ),并尝试将这些配合物用作通过与碳亲电试剂反应形成大环铁膦配合物的模板。;在用各种碳亲电试剂处理这些铁配合物的过程中,发现了溴马来酸酐与质子海绵之间有趣的反应。第三章探讨了产物4-马来酸酐-1,8-双-(二甲基氨基)萘(MAPS)。由于其共轭的供体-受体网络在质子化时会被破坏,因此MAPS可作为质子海绵的比色形式。还描述了MAPS与胺官能化固体载体的结合,形成了固体负载的质子海绵试剂。;第四章讨论了水溶性膦1,2-双(二(羟甲基)膦基乙烷(DHMPE)。尽管未结合的羟甲基膦通常通过磷曼尼希反应与NH-官能胺反应,但DHMPE的这种配合物和其他配合物不会经历该反应。对羟甲基膦-硼烷的进一步研究表明,目前所接受的磷曼尼希反应机理是不正确的,并提出了另一种机理。;第五章讨论了水溶性膦的铜(I)配合物的合成和功能化。与第一章所述的络合物不同,这些络合物容易与α,o-二卤化物或二(酰氯)反应,形成质谱与具有大环膦配体的质谱相对应的络合物。与大多数大环四膦配合物不同,这些配合物可以通过用硫化物处理来脱金属。最后,根据在这些研究过程中获得的经验,提出了一种水溶性大环化合物的新合成方法。本论文包括以前发表和未发表的合著材料。

著录项

  • 作者

    Swor, Charles D.;

  • 作者单位

    University of Oregon.;

  • 授予单位 University of Oregon.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 310 p.
  • 总页数 310
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:22

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