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Preparation and self-assembly properties of silicone-modified hydrophobically associating polyacrylamide

机译:有机硅改性的疏水缔合聚丙烯酰胺的制备及其自组装性能

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Silicone-modified hydrophobically associating polyacrylamide (USPAM) was prepared by emulsifier-free ultrasonically assisted radical polymerization with acrylamide (AM), dimethylvinylphenylsilane (DMPS), and 2-acrylamido-2- methylpropane sulfonic acid (AMPS). Various aspects of the copolymerization reaction and the effects of salt, temperature, and surfactant (sodium dodecyl sulfate, SDS) on the self-assembly behavior of USPAM were studied through viscometry, fluorescence spectroscopy (FS), laser light scattering (LLS), rheology and other methods. The results showed that the optimal polymerization conditions were: contents of DMPS, AMPS, and initiator were 0.80 mol%, 10 mol%, and 0.40 wt%, respectively; the pH was 8.0; and an ultrasonic power was 140 W. As the concentration of USPAM increased, the hydrophobic self-assembly behavior of USPAM caused its apparent viscosity and the amount of crosslinking in its structure to increase. The critical association concentration (CAC) was observed to be near to 0.38 g dl~(-1). Salt resistance appeared when the concentration of the USPAM solution exceeded 0.20 g dl~(-1). A maximum value of the apparent viscosity of USPAM solution was seen as the temperature was increased due to the enhanced self-assembly properties of the molecules. The addition of SDS improved the self-assembly behavior of USPAM below the CAC, but degraded this behavior above the CAC. The shape factor (/) tended to continuously increase. The aggregation number (N) presented a minimum value in the USPAM-SDS system.
机译:有机硅改性的疏水缔合聚丙烯酰胺(USPAM)是通过无乳化剂的超声辅助自由基聚合与丙烯酰胺(AM),二甲基乙烯基苯基硅烷(DMPS)和2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)制备的。通过粘度,荧光光谱(FS),激光散射(LLS),流变学研究了共聚反应的各个方面以及盐,温度和表面活性剂(十二烷基硫酸钠,SDS)对USPAM自组装行为的影响和其他方法。结果表明,最佳的聚合条件为:DMPS,AMPS和引发剂的含量分别为0.80mol%,10mol%和0.40wt%。 pH为8.0。超声功率为140W。随着USPAM浓度的增加,USPAM的疏水自组装行为导致其表观粘度和结构中的交联量增加。观察到临界缔合浓度(CAC)接近0.38 g dl〜(-1)。当USPAM溶液的浓度超过0.20 g dl〜(-1)时,出现了耐盐性。由于分子自组装性能增强,随着温度升高,USPAM溶液的表观粘度最大值出现。 SDS的添加改善了CAC下方USPAM的自组装行为,但降低了CAC上方的这种自组装行为。形状因子( / )趋于连续增加。聚合数(N)在USPAM-SDS系统中显示为最小值。

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