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Mechanistic investigations of zirconocene alkene polymerization catalysts: Reactivity with alpha-olefins and dihydrogen.

机译:锆茂烯烃聚合催化剂的机理研究:与α-烯烃和二氢的反应性。

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摘要

Zirconocene-catalyzed alpha-olefin polymerization is purely a kinetic phenomenon; the relative rates of monomer insertion (which includes insertion into a Zr-Me bond, insertion into a Zr-alkyl bond, 1,2-alkene insertion, and 2,1-alkene insertion), isomerization, beta-hydride elimination and hydrogenolysis affect the activity of the catalyst and the properties of the polymer, such as molecular weight and tacticity. We report the direct observation of zirconocene catalyst speciation and the rates of monomer insertion and hydrogenolysis by low-temperature 1H NMR spectroscopy for the [rac -(C2H4(1-indenyl)2)ZrMe][MeB(C 6F5)3] system. As expected, the rate of alkene insertion into a Zr-alkyl (alkyl ≠ Me) bond is faster than insertion into a Zr-Me bond. The rates of hydrogenolysis for several Zr-polyalkenyl species have been measured. The rate of alkene insertion and hydrogenolysis for a model secondary Zr-alkyl compound do not indicate that secondary Zr-alkyls are dormant or inactive species for this catalytic system.; The choice of activator for has a profound effect on catalyst activity and polymer properties. However, many less-coordinating anions are difficult to study by direct observation methods. The use of more polar solvent mixtures can mimic the effects of a more weakly bound counterion. Rates of initiation, propagation, and termination have been measured for 1-hexene polymerization catalyzed by [rac-(C2H4(1-indenyl) 2)ZrMe] [MeB(C6F5)3] in toluene/chlorobenzene solvent mixtures using both direct observation by 1H NMR spectroscopy and quench-flow methods. While initiation and propagation rates increase exponentially with increasing solvent polarity, termination rates increase linearly with increasing solvent polarity.
机译:锆茂催化的α-烯烃聚合纯粹是一种动力学现象。单体插入的相对速率(包括插入Zr-Me键,插入Zr-烷基键,1,2-烯烃插入和2,1-烯烃插入),异构化,β-氢化物消除和氢解影响催化剂的活性和聚合物的性能,例如分子量和立构规整度。我们报告直接观察到的锆茂催化剂形态和单体插入和氢解的速率由[rac-(C2H4(1-indenyl)2)ZrMe] [MeB(C 6F5)3]低温1H NMR光谱分析。如所期望的,烯烃插入Zr-烷基(烷基≠Me)键的速率比插入Zr-Me键更快。已经测量了几种Zr-聚烯基物质的氢解速率。模型仲Zr-烷基化合物的烯烃插入和氢解速率并不表明仲Zr-烷基对于该催化体系是休眠或不活泼的。选择活化剂对催化剂活性和聚合物性能有深远的影响。但是,许多配位较差的阴离子难以通过直接观察方法进行研究。使用极性更大的溶剂混合物可以模拟结合较弱的抗衡离子的作用。通过[rac-(C2H4(1-indenyl)2)ZrMe] [MeB(C6F5)3]在甲苯/氯苯溶剂混合物中的催化作用,可以通过直接观察得到的速率来测量1-己烯聚合反应的引发,扩散和终止速率。 1 H NMR光谱和淬灭流方法。尽管引发和传播速率随溶剂极性的增加而呈指数增加,但终止速率随溶剂极性的增加而线性增加。

著录项

  • 作者

    Batterton, Jeanine M.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 228 p.
  • 总页数 228
  • 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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