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Investigations of crystallization and ionic interactions of sulfonated syndiotactic polystyrene ionomers.

机译:磺化间同立构聚苯乙烯离聚物的结晶和离子相互作用的研究。

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摘要

Syndiotactic polystyrene (sPS) is a semicrystalline polymer that crystallizes rapidly and exhibits several polymorphic crystal structures. Crystallization of sPS from the melt results in an all-trans chain conformation comprised of α (hexagonal unit cell) and β (orthorhombic unit cell) crystal forms. Crystallization of sPS from solution produces helical crystal structures. To ascertain the link between ionic aggregation and crystallization in semicrystalline ionomers, sulfonated syndiotactic polystyrene (SsPS) has been selected as a model system.; 23Na SSNMR (Solid-state NMR) spectra have also been utilized to analyze the influence of a surfactant (i.e., dodecyl benzene sodium sulfonate (DBSNa)) on the state of ionic aggregation. Increasing the surfactant content within SsPS ionomers caused a downfield shift coupled with a decrease in width, for the peak corresponding to the ionic aggregates. Added DBSNa molecules can disrupt interactions within the ionic aggregates and consequently weaken the electrostatic network in SsPS.; The influence of nonpolar/polar additives on syndiotactic polystyrene was also evaluated utilizing isothermal crystallization, 23Na SSNMR, 13C CPMAS (Cross-polarization Magic-angle spinning) NMR and WAXD (Wide-angle X-ray Diffraction) investigations.; To evaluate the influence of crystallization on ionic aggregation in SsPS ionomers, 23Na and 13C SSNMR techniques have been utilized. Polymorphic nature was not significantly affected by the incorporation of ionic groups, as indicated by the identical 13C spectra for sPS and SsPS polymers. A densification of the crystalline domains is likely to affect the conformations of amorphous chains attached to the crystallite surfaces. This perturbation in chain conformation may then result in a disruption of the state of ionic aggregation. The retention of the state of ionic aggregation within SaPS upon annealing clearly indicates that the disruption in the ionic domains of the SsPS ionomer originates from the polymorphic transition. (Abstract shortened by UMI.)
机译:间规聚苯乙烯(sPS)是一种半结晶聚合物,可快速结晶并显示出几种多晶型晶体结构。 sPS从熔体中的结晶导致全反式链构象,该构象由α(六边形晶胞)和β(斜方晶胞)晶型组成。溶液中sPS的结晶会产生螺旋晶体结构。为了确定离子聚集与半结晶离聚物中结晶之间的联系,已选择磺化间同聚苯乙烯(SsPS)作为模型系统。 23 Na SSNMR(固态NMR)光谱也已经用于分析表面活性剂(即十二烷基苯磺酸钠(DBSNa))对离子聚集状态的影响。对于对应于离子聚集体的峰,SsPS离聚物中表面活性剂含量的增加会导致低场偏移和宽度减小。添加的DBSNa分子会破坏离子聚集体内的相互作用,从而削弱SsPS中的静电网络。还使用等温结晶, 23 Na SSNMR, 13 C CPMAS(交叉极化魔角旋转)NMR和WAXD评估了非极性/极性添加剂对间同聚苯乙烯的影响。 (广角X射线衍射)调查。为了评估结晶对SsPS离聚物中离子聚集的影响,已使用 23 Na和 13 C SSNMR技术。 sPS和SsPS聚合物的相同的 13 C光谱表明,离子基团的掺入对多晶型性质没有显着影响。晶畴的致密化可能影响附着在微晶表面上的非晶链的构象。然后,链构象的这种扰动可能导致离子聚集状态的破坏。退火后,SaPS中离子聚集状态的保留清楚地表明,SsPS离聚物离子域的破坏源自多晶型转变。 (摘要由UMI缩短。)

著录项

  • 作者

    Gummaraju, Raghuram.;

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Chemistry Polymer.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:47:50

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