首页> 外文期刊>Journal of Dispersion Science and Technology >Study of Micellization Behavior of Some Alkyldimethylbenzyl Ammonium Chloride Surfactants in the Presence of Polymers
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Study of Micellization Behavior of Some Alkyldimethylbenzyl Ammonium Chloride Surfactants in the Presence of Polymers

机译:聚合物存在下某些烷基二甲基苄基氯化铵表面活性剂的胶束化行为研究

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The micellization behavior of homologous series of cationic surfactants tetradecyl- (C14BCl), hexadecyl- (C16BCl) and stearyldimethyl-benzyl ammonium chloride (C18BCl) in water and in aqueous solutions of polymers such as polyvinyl pyrrolidone (PVP) and polyethylene glycols (PEG-20 and PEG-06) has been studied at 298.15K using the conductometric method. The same method has also been used to study the mixed systems, that is, C16-C14BCl, C18-C16BCl, and C18-C14BCl over the whole mole fraction range of the higher chain length surfactant at 298.15, 308.15, and 318.15K in water and in presence of 0.5 and 1.0% PVP by volume at 298.15 K. From these measurements various micellar parameters like critical aggregation concentration (CAC), polymer saturation point (PSP), degree of ionization (psi), and standard free energy of transfer (Delta G(t)degrees) have been calculated. The CAC and Delta G(t)degrees values were found to decrease with increase in polymer concentration whereas PSP values were found to remain constant except in the case of C14BCl where PSP values were found to increase with polymer concentration. The regular solution approach has been applied to determine the mixed micelle mole fraction (X) and the interaction parameter (beta). These parameters have also been discussed in terms of micelle-polymer interactions. The combination C16-C14BCl shows synergism at all the studied temperatures in aqueous solution whereas remaining combinations show antagonism (except for C18-C16BCl at 318.15 K). In presence of PVP, the binary mixtures show antagonistic behavior which increases with increase in PVP concentration.
机译:阳离子表面活性剂十四烷基-(C14BCl),十六烷基-(C16BCl)和硬脂基二甲基-苄基氯化铵(C18BCl)的同源系列在水中以及在聚合物水溶液中的胶束化行为,例如聚乙烯吡咯烷酮(PVP)和聚乙二醇(PEG- 20和PEG-06)已使用电导法在298.15K下进行了研究。还使用相同的方法来研究混合体系,即在水中链长为298.15、308.15和318.15K的较高链长表面活性剂的整个摩尔分数范围内的C16-C14BCl,C18-C16BCl和C18-C14BCl在298.15 K时存在0.5和1.0%的PVP(体积)。从这些测量中,各种胶束参数如临界聚集浓度(CAC),聚合物饱和点(PSP),电离度(psi)和标准转移自由能(已计算出Delta G(t)度。发现CAC和ΔG(t)度值随着聚合物浓度的增加而降低,而发现PSP值保持恒定,除了C14BCl的情况,其中发现PSP值随聚合物浓度而增加。已应用常规溶液方法确定混合的胶束摩尔分数(X)和相互作用参数(beta)。还已经根据胶束-聚合物相互作用讨论了这些参数。 C16-C14BCl组合在水溶液中所有研究温度下均显示协同作用,而其余组合则显示拮抗作用(C18-C16BCl在318.15 K时除外)。在PVP存在下,二元混合物表现出拮抗行为,其随PVP浓度的增加而增加。

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