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Compositional and Temperature Effects on the Rheological Properties of Polyelectrolyte–Surfactant Hydrogels

机译:组成和温度对聚电解质表面活性剂水凝胶流变性质的影响

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摘要

The rheological properties of hydrogels prepared by physical interactions between oppositely charged polyelectrolyte and surfactant in micellar form were studied. Specifically, hyaluronan was employed as a negatively charged polyelectrolyte and Septonex (carbethopendecinium bromide) as a cationic surfactant. Amino-modified dextran was used as a positively charged polyelectrolyte interacting with sodium dodecylsulphate as an anionic surfactant. The effects of the preparation method, surfactant concentration, ionic strength (the concentration of NaCl background electrolyte), pH (buffers), multivalent cations, and elevated temperature on the properties were investigated. The formation of gels required an optimum ionic strength (set by the NaCl solution), ranging from 0.15–0.3 M regardless of the type of hydrogel system and surfactant concentration. The other compositional effects and the effect of temperature were dependent on the polyelectrolyte type or its molecular weight. General differences between the behaviour of hyaluronan-based and cationized dextran-based materials were attributed to differences in the chain conformations of the two biopolymers and in the accessibility of their charged groups.
机译:研究了由带相反电荷的聚电解质与胶束形式的表面活性剂之间的物理相互作用制得的水凝胶的流变性质。具体而言,采用透明质酸作为带负电荷的聚电解质,使用Septonex(溴化碳萘烷)作为阳离子表面活性剂。氨基改性的葡聚糖用作带正电荷的聚电解质,与十二烷基硫酸钠作为阴离子表面活性剂相互作用。研究了制备方法,表面活性剂浓度,离子强度(NaCl背景电解质的浓度),pH(缓冲液),多价阳离子和高温对其性能的影响。凝胶的形成需要最佳的离子强度(由NaCl溶液设定),无论水凝胶体系的类型和表面活性剂的浓度如何,其离子强度都应在0.15-0.3 M之间。其他组成效应和温度效应取决于聚电解质类型或其分子量。透明质酸基和阳离子化葡聚糖基材料之间行为的一般差异归因于两种生物聚合物的链构象及其带电基团的可及性方面的差异。

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