首页> 外文期刊>journal of applied polymer science >Functional polymers for colloidal applications. VII. Aggregate formation of lipophile‐modified polyacrylates in aqueous solutions
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Functional polymers for colloidal applications. VII. Aggregate formation of lipophile‐modified polyacrylates in aqueous solutions

机译:用于胶体应用的功能性聚合物。VII. 亲脂性改性聚丙烯酸酯在水溶液中的聚集体形成

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AbstractWater‐soluble copolymers, poly(dodecyl acrylate–coacrylic acid) (PDA), are synthesized by copolymerizing different ratios of dodecyl–acrylate/acrylic acid. Their aqueous solutions are transparent. The plots ofI1/I3(the intensity ratio of pyrene emission at 374 nm and 385 nm) and of surface tension as a function of polymer concentrations are combined to verify the existence of the aggregates of PDAs. It is found that the aggregations begin to form at concentrations below that of the polymer transfer to the air–water interface. The plots ofI1/I3as a function of polymer concentration shows that the polymers with a higher ratio of dodecyl acrylate form polymer aggregates at lower concentrations. The hydrophobicity of the inner core of polymer aggregates is close to that of sodium dodecyl sulfate (SDS). Polymer solutions of PDA 30, PDA 30L, and PDA 15, show significant solubilization ability to pyrene. (The molar ratio of dodecyl acrylate/total acrylates is 30, 30, and 15 for PDA 30, PDA 30L, and PDA 15, respectively. L, low molecular weight.) The solubilization ability increases with the increase in polymer concentration and degree of substitution of dodecylamine. The intensity ratio of the excimer emission to monomer emission of pyrene (Ie/Im) increases with increasing polymer concentration, roughly parallel to the increase in the amount of pyrene solubilized. However, theIe/Imat a fixed pyrene concentration (Ie/I m*) decreases with increasing polymer concentration. These phenomena are interpreted in terms of the amount of pyrene solubilized and the size and concentration of the polymer aggregates. © 1993 John Wiley
机译:摘要 由不同比例的十二烷基丙烯酸酯/丙烯酸共聚而成的水溶性共聚物——聚(十二烷基丙烯酸酯-丙烯酸酯)(PDA)。它们的水溶液是透明的。结合I1/I3(374 nm和385 nm处芘发射的强度比)和表面张力随聚合物浓度的变化曲线,验证了PDA聚集体的存在。结果发现,聚集体在低于聚合物转移到空气-水界面的浓度时开始形成。I1/I3随聚合物浓度变化的曲线表明,十二烷基丙烯酸酯比例较高的聚合物在较低浓度下形成聚合物聚集体。聚合物聚集体内核的疏水性接近十二烷基硫酸钠(SDS)。PDA 30、PDA 30L 和 PDA 15 的聚合物溶液对芘具有显著的溶解能力。(PDA 30、PDA 30L 和 PDA 15 中,十二烷基丙烯酸酯/总丙烯酸酯的摩尔比分别为 30%、30% 和 15%。L,低分子量。溶解能力随着聚合物浓度和十二胺取代度的增加而增加。准分子发射与芘单体发射的强度比(Ie/Im)随着聚合物浓度的增加而增加,大致与芘溶解量的增加平行。然而,固定芘浓度(Ie/I m*)随着聚合物浓度的增加而降低。这些现象根据芘的溶解量以及聚合物聚集体的大小和浓度来解释。© 1993 约翰·威利

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