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Solution behavior of hydrophobically associating water-soluble block copolymerso of acrylamide and N-benzylacrylamide

机译:丙烯酰胺和N-苄基丙烯酰胺的疏水缔合水溶性嵌段共聚物的溶液行为

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摘要

Hydrophobically modified water-soluble block copolymers have been prepared by an aqueous micellar copolymerization technique from acrylamide and small amounts of N-benzylacrylamide (2 and 3 mol%) with the objective of investigating the copolymers' rheorogical behavior and surface and interfacial activities under various conditions such as polymer concentration, shear rate, temperature and salinity. As expected, the block copolymers exhibit improved thickening properties due to intermolecular hydrophobic associations as the solution viscosity of the copolymers increases sharply with increasing polymer concentration. Additional evidence for intermolecular association is provided by the effect of NaCI salt on the solution viscosity, and as expected, the addition of NaCl to the polymer solution gives rise to copolymers with enhanced thickening properties. An almost shear rate independent viscosity (Newtonian plateau) is also exhibited at high shear rate and atypical non-Newtonian shear thinning behavior appears at low shear rates and high temperatures. Furthennore, the block copolymers exhibit high air-Iiquid surface and liquid-Iiquid interfacial activities as the surface and interfacial tensions (IFrs) decrease with increasing polymer concentration. This behavior is yet another evidence of polymolecular micelles formation of the copolymers in aqueous solution, and thus the high tendency to adsorb at an interface. The surface and IFrs exhibited by the copolymers were found to be relatively insensitive to the concentration of salt (NaCl).
机译:通过水性胶束共聚技术,由丙烯酰胺和少量的N-苄基丙烯酰胺(2和3摩尔%)制备了疏水改性的水溶性嵌段共聚物,目的是研究共聚物在各种条件下的流变行为以及表面和界面活性例如聚合物浓度,剪切速率,温度和盐度。如所期望的,由于共聚物的溶液粘度随着聚合物浓度的增加而急剧增加,由于分子间的疏水缔合,嵌段共聚物表现出改善的增稠性能。 NaCl盐对溶液粘度的影响提供了分子间缔合的其他证据,并且如所预期的,将NaCl添加到聚合物溶液中会产生具有增强的增稠性能的共聚物。在高剪切速率下也表现出几乎与剪切速率无关的粘度(牛顿平台),并且在低剪切速率和高温下出现非典型的非牛顿剪切稀化行为。此外,随着表面和界面张力(IFrs)随着聚合物浓度的增加而降低,嵌段共聚物表现出高的气液表面和液-液界面活性。这种行为是在水溶液中形成共聚物的高分子胶束的又一证据,因此在界面处吸附的趋势很高。发现由共聚物表现出的表面和IFrs对盐(NaCl)的浓度相对不敏感。

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