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ASPECTS OF MISCIBILITY IN POLYMER SYSTEMS: HYDROGEN BONDING IN POLYMER BLENDS (PVC, POLYCAPROLACTONE).

机译:聚合物系统中混溶性的方面:聚合物混和物(PVC,聚己内酯)中的氢键结合。

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摘要

The importance of hydrogen bonding interactions in promoting miscibility in polymer-polymer blends has been demonstrated. Hydrogen bonding is considered to be responsible for the large number of compatible blends involving poly(vinyl chloride), poly(caprolactone), and several water-soluble polymers. This research has been undertaken to understand the structural requirements for hydrogen bonding in polymer blends, with the goal of providing molecular explanations for the phase behavior of selected polymer-polymer systems, and a basis for predicting phase behavior of new systems. The method of analysis has been infrared spectroscopy; the locations of the absorption frequencies of potentially hydrogen bonded groups (hydroxyl and carbonyl absorptions) were monitored on carefully selected "probe" molecules. The intensities of the bonded and nonbonded peaks were compared to measure the percentage of bonded groups, while the amount of shift (from nonbonded absorptions) was used to determine hydrogen bond strength.; Mixtures of low molecular weight monofunctional probes incorporated into a variety of polymer matices were studied in order to determine the effect of molecular size and geometry on the strength of a hydrogen bonding interaction. Cyclic base probes were found to interact more strongly than straight chain molecules; probe geometry was not significant in mixtures of monofunctional acid probes. Results of these studies were also used to rank polymer matices in terms of their potential to interact with another polymer.; The interaction of oligomeric probes with several polymers was also investigated. These materials were ideally large enough to interact with matrix as would a polymer, but small enough to preclude intramolecular hydrogen bonding and phase separation. However, probe-probe interactions were found to dominate in these blends; the strength of these interactions was usually a function of the polymer dielectric constant. Thus, the number and strength of self-associations which had to be broken to achieve miscibility were important. Also, the effect of weaker non-specific interactions, such as dipole-dipole, was significant.; Changes in subtle variables, including polymer tacticity, functional group concentration, and matrix molecular weight, were also studied.
机译:已经证明氢键相互作用在促进聚合物-聚合物共混物中的混溶性中的重要性。氢键被认为是涉及包括聚氯乙烯,聚己内酯和几种水溶性聚合物在内的大量相容性共混物的原因。进行这项研究是为了了解聚合物共混物中氢键的结构要求,目的是为所选聚合物-聚合物系统的相行为提供分子解释,并为预测新系统的相行为提供基础。分析的方法是红外光谱法。在精心选择的“探针”分子上监测潜在氢键基团(羟基和羰基吸收)的吸收频率位置。比较键合峰和非键合峰的强度以测量键合基团的百分比,同时使用位移量(来自非键合吸收)确定氢键强度。为了确定分子大小和几何形状对氢键相互作用强度的影响,对掺入多种聚合物本体中的低分子量单功能探针的混合物进行了研究。发现环状碱基探针比直链分子相互作用更强。单官能酸探针的混合物中,探针的几何形状不明显。这些研究的结果还用于根据聚合物与另一种聚合物相互作用的潜力对聚合物进行排序。还研究了低聚探针与几种聚合物的相互作用。这些材料理想地大到足以与聚合物一样与基质相互作用,但是小到足以阻止分子内氢键和相分离。然而,发现在这些混合物中探针-探针相互作用起主要作用。这些相互作用的强度通常是聚合物介电常数的函数。因此,为达到可混溶性而必须打破的自我联系的数量和强度很重要。同样,较弱的非特异性相互作用(如偶极-偶极子)的影响也很明显。还研究了细微变量的变化,包括聚合物的立构规整度,官能团浓度和基质分子量。

著录项

  • 作者

    CANGELOSI, FRANK.;

  • 作者单位

    The University of Connecticut.;

  • 授予单位 The University of Connecticut.;
  • 学科 Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 1982
  • 页码 302 p.
  • 总页数 302
  • 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

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