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首页> 外文期刊>International Journal of Polymer Science >Rheological Properties of Hydrophobically Associative Copolymers Prepared in a Mixed Micellar Method Based on Methacryloxyethyl-dimethyl Cetyl Ammonium Chloride as Surfmer
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Rheological Properties of Hydrophobically Associative Copolymers Prepared in a Mixed Micellar Method Based on Methacryloxyethyl-dimethyl Cetyl Ammonium Chloride as Surfmer

机译:以甲基丙烯酰氧基乙基-二甲基鲸蜡基氯化铵为表面活性剂的混合胶束法制备的疏水缔合共聚物的流变性能

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摘要

A novel cationic surfmer, methacryloxyethyl-dimethyl cetyl ammonium chloride (DMDCC), is synthesized. The micellar properties, including critical micelle concentration and aggregation number, of DMDCC-SDS mixed micelle system are studied using conductivity measurement and a steady-state fluorescence technique. A series of water-soluble associative copolymers with acrylamide and DMDCC are prepared using the mixed micellar polymerization. Compared to conventional micellar polymerization, this new method could not only reasonably adjust the length of the hydrophobic microblock, that is,NH, but also sharply reduce the amount of surfactant. Their rheological properties related to hydrophobic microblock and stickers are studied by the combination of steady flow and linear viscoelasticity experiments. The results indicate that both the hydrophobic content and, especially the length of the hydrophobic microblock are the dominating factors effecting the intermolecular hydrophobic association. The presence of salt influences the dynamics of copolymers, resulting in the variation of solution characters. Viscosity measurement indicates that mixed micelles between the copolymer chain and SDS molecules serving as junction bridges for transitional network remarkably enhance the viscosity. Moreover, the microscopic structures of copolymers at different experimental conditions are conducted by ESEM. This method gives us an insight into the preparation of hydrophobically associative water-soluble copolymers by cationic surfmer-anionic surfactant mixed micellar polymerization with good performance.
机译:合成了一种新型的阳离子表面活性剂,甲基丙烯酰氧基乙基-二甲基鲸蜡基氯化铵(DMDCC)。使用电导率测量和稳态荧光技术研究了DMDCC-SDS混合胶束系统的胶束特性,包括临界胶束浓度和聚集数。使用混合胶束聚合反应制备了一系列与丙烯酰胺和DMDCC的水溶性缔合共聚物。与传统的胶束聚合相比,这种新方法不仅可以合理地调节疏水性微嵌段(NH)的长度,而且还可以大大减少表面活性​​剂的用量。通过稳定流和线性粘弹性实验相结合,研究了它们与疏水性微嵌段和粘性胶粘剂的流变特性。结果表明,疏水含量和尤其是疏水微嵌段的长度都是影响分子间疏水缔合的主要因素。盐的存在影响共聚物的动力学,导致溶液特性的变化。粘度测量表明,共聚物链和用作过渡网络连接桥的SDS分子之间的混合胶束显着提高了粘度。此外,通过ESEM对共聚物在不同实验条件下的微观结构进行了研究。该方法使我们对具有良好性能的阳离子表面活性剂-阴离子表面活性剂混合胶束聚合制备疏水缔合的水溶性共聚物有深刻的了解。

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