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The effect and role of functional groups in the compatibilization of immiscible polymer blends: Investigation of blend morphology, properties and thermodynamics.

机译:官能团在不混溶聚合物共混物增容中的作用和作用:共混物形态,性质和热力学研究。

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摘要

The underlying theme through all of the facets of this project is the effect of functional groups on the morphology and properties of polymer systems, specifically when applied to the compatibilization of immiscible polymer blends. The functional groups range from grafted acid and maleic anhydride units to sulfo-isophthalate groups polymerized into the polymer backbone. In order to capitalize on the possibility for specific intermolecular interactions between blend components, compatibilization of blends of polar polymers, such as polyester and polyamide, was investigated.; Initially, the project focused on improving the thermal and mechanical properties of poly(L-lactide) (PLLA) with the goal of extending the temperature range of use for the polymer while maintaining its degradability. The research employed reactive extrusion techniques to graft functional groups, either maleic anhydride or acid-functional peroxides, onto the backbone of PLLA in order to use the functionalized polymers as compatibilizers in degradable blends of PLLA with cellulose acetate or polyamide 6 as well as degradable clay nanocomposites.; The course of the project then shifted to an investigation into the use of polyester ionomers as compatibilizers in amorphous polyester/polyamide blends. The research built upon the results of previous polyester/polyamide compatibilization studies, but was carried out using amorphous blend components in order to more clearly elucidate the morphology of the blends along with the interactions and thermodynamics that govern it.; In investigating the morphology of the ionomer-compatibilized blends, not only was a reduction in domain sizes observed but also a shift in the morphology from a droplet/matrix to co-continuous structure occurred at higher loadings of the ionomer. From literature research, this was presumed to be caused by a reduction in the interfacial tension between the blend components with the incorporation of the ionomer compatibilizer, though such a trend with ionomers had never been reported. Thus, direct determination of the interfacial tension in both the presence and absence of ionic functional groups was carried out using imbedded fiber retraction experiments.; Further investigation of the polyester/polyamide blend system involved extending the use of synchrotron small angle x-ray scattering into the characterization of the morphology and domain sizes as a function of the incorporation of ionic functionality. The research was based on literature reports discussing the use of synchrotron SAXS and SANS to investigate the morphology of heterogeneous polymer systems, in particular block copolymers and IPN's. In this investigation, synchrotron SAXS was found to be useful in the investigation of blend morphology with results showing trends similar to those observed in previous experiments. (Abstract shortened by UMI.)
机译:该项目所有方面的基本主题是官能团对聚合物体系形态和性能的影响,特别是当应用于不混溶的聚合物共混物的相容性时。官能团的范围从接枝的酸和马来酸酐单元到聚合到聚合物主链中的磺基间苯二甲酸酯基团。为了利用在共混物组分之间特定的分子间相互作用的可能性,研究了极性聚合物如聚酯和聚酰胺的共混物的相容性。最初,该项目着重于改善聚(L-丙交酯)(PLLA)的热和机械性能,目的是在保持聚合物降解性的同时扩大聚合物的使用温度范围。该研究采用反应挤出技术将马来酸酐或酸官能过氧化物的官能团接枝到PLLA的骨架上,以便在PLLA与醋酸纤维素或聚酰胺6以及可降解粘土的可共混混合物中使用功能化聚合物作为相容剂。纳米复合材料。然后,该项目的过程转向研究使用聚酯离聚物作为无定形聚酯/聚酰胺共混物中的增容剂。这项研究是建立在先前聚酯/聚酰胺相容性研究结果的基础上的,但使用无定形共混物组分进行的研究是为了更清楚地阐明共混物的形态以及支配它的相互作用和热力学。在研究离聚物相容的共混物的形态时,不仅观察到畴尺寸的减小,而且在较高的离聚物负载下发生了从液滴/基质到共连续结构的形态转变。从文献研究中推测,这是由于掺入离聚物增容剂而降低了共混组分之间的界面张力所致,尽管从未报道过这种离聚物趋势。因此,使用嵌入的纤维回缩实验可以直接确定在存在和不存在离子官能团的情况下的界​​面张力。聚酯/聚酰胺共混体系的进一步研究涉及将同步加速器小角度X射线散射的应用扩展到根据离子官能度的引入来表征形态和畴尺寸。该研究基于文献报告,该报告讨论了使用同步加速器SAXS和SANS研究异质聚合物系统的形态,特别是嵌段共聚物和IPN的形态。在这项研究中,发现同步加速器SAXS可用于研究共混物形态,其结果显示出与先前实验中观察到的趋势相似的趋势。 (摘要由UMI缩短。)

著录项

  • 作者

    Gemeinhardt, Gregory Carl.;

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 231 p.
  • 总页数 231
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

  • 入库时间 2022-08-17 11:42:27

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