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The hydrophilic nature of water trees (in polyethene)

机译:水树的亲水性(在聚乙烯中)

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The water tree phenomenon is examined by investigating its hydrophilic nature. Experimental findings lead to a model which involves both the chemical composition and the physical structure of water trees. Carboxylate groups were found in all water trees considered. The concentration depended greatly on the type of polyethene; the carboxylate groups are thought to be end groups of the polymer. An interaction between water and carboxylate groups was assessed. This also was done for groups which absorb in the 1000-1200-cm/sup 1/ range; these groups are probably ionic sulfur-oxygen groups. It is shown that the hydrophilic nature of watertrees may be explained completely by the presence of chemically or physically bonded ionic groups. The oxidative stability of polyethene is reduced locally by water treeing. The results obtained support the idea of oxidation occurring during watertreeing if carboxylate groups and ionic sulfur-oxygen groups are regarded as possible oxidation products. Water trees can be selectively permeable to different entities; they seem to bear a close resemblance to ionomer membranes locally.
机译:通过研究其亲水性来检查水树现象。实验结果导致建立了一个模型,该模型涉及水树的化学成分和物理结构。在所有考虑的水树中都发现了羧酸盐基团。浓度很大程度上取决于聚乙烯的类型。羧酸根被认为是聚合物的端基。评估了水和羧酸根基团之间的相互作用。对于吸收范围为1000-1200-cm / sup 1 /的组,也要执行此操作。这些基团可能是离子硫-氧基团。结果表明,水树的亲水性可以通过化学或物理键合的离子基团的存在来完全解释。水树会局部降低聚乙烯的氧化稳定性。如果羧酸盐基团和离子硫氧基团被认为是可能的氧化产物,则获得的结果支持在水采树期间发生氧化的想法。水树可以选择性渗透不同的实体。它们似乎与局部离聚物膜非常相似。

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