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首页> 外文期刊>Journal of Surfactants and Detergents >Micellization of Anionic Sulfonate Gemini Surfactants and Their Interactions With Anionic Polyacrylamide
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Micellization of Anionic Sulfonate Gemini Surfactants and Their Interactions With Anionic Polyacrylamide

机译:阴离子磺酸盐双子晶表面活性剂的胶束化及其与阴离子聚丙烯酰胺的相互作用

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摘要

Anionic sulfonate gemini surfactants 8-s-8(SO3)(2) and 12-s-12(SO3)(2) (s = 3, 6) were synthesized, and their micellization in aqueous solution at 25.0 degrees C and pH 9 was investigated. The results show that the critical micelle concentrations (CMC) of 8-s-8(SO3)(2) are more than 2 orders of magnitude larger than those of 12-s-12(SO3)(2), but the spacer length has a relatively small impact on the CMC. Moreover, the interactions of n-s-n(SO3)(2) (n = 8, 12; s = 3, 6) with anionic polyacrylamide (PAM) at 25.0 degrees C and pH 9 were investigated using surface tensiometry, rheolgy, and scanning electron microscopy (SEM). The results indicate that the surface tension and rheological properties of PAM depend on the concentration of n-s-n(SO3)(2). Below the critical aggregation concentration of C-1, surface tension is sharply reduced, the surface tension of n-s-n(SO3)(2)/PAM is lower than n-s-n(SO3)(2) alone, but viscosity is almost unchanged with increasing Cn-s-n(SO3)2. Above C-1, surface tension reduces very slowly until the saturated concentration of C-2 is reached. Above C-2, surface tension rapidly reduces until C-M is attained, suggesting free n-s-n(SO3)(2) micelles begin to form. In the region of C-1-C-M, the viscosity significantly increases. Above C-M, surface tension is basically unchanged and these curves coincide with those of the single surfactant system. Moreover, the viscosity is almost constant. The SEM images indicate that fibrous aggregates are formed below C-1, then transformed into multilayer fibrous aggregates above C-1, and further into fiber-braided-structured and spider-web-structured aggregates above C-M. The variation of viscosity is closely associated with the transformation of aggregates.
机译:合成阴离子磺酸磺酸酯Gemini表面活性剂8-S-8(SO 3)(2)和12-S-12(SO 3)(S = 3,6),并在25.0℃和pH 9的水溶液中胶束化调查了。结果表明,8-S-8(SO 3)(2)的临界胶束浓度(CMC)大于12-S-12(SO 3)(2)的数量级,但间隔长度对CMC产生相对较小的影响。此外,使用表面张力测定,流阻和扫描电子显微镜研究NSN(SO 3)(2)(2)(2)(2)(N = 8,12; S = 3,6)与阴离子聚丙烯酰胺(PAM)和pH 9的相互作用(SEM)。结果表明PAM的表面张力和流变性质取决于N-S-N(SO 3)(2)的浓度。低于C-1的临界聚集浓度,表面张力急剧降低,NSN(SO3)(2)/ PAM的表面张力小于NSN(SO 3)(2),但随着CN的增加几乎不变。 SN(SO3)2。在C-1以上,表面张力缩短得非常缓慢,直到达到饱和浓度的C-2。在C-2上方,表面张力迅速降低,直至获得C-M,表明游离N-S-N(SO 3)(2)胶束开始形成。在C-1-C-M的区域中,粘度显着增加。在C-M以上,表面张力基本不变,并且这些曲线与单个表面活性剂系统的曲线一致。而且,粘度几乎是恒定的。 SEM图像表明纤维体聚集在C-1下方形成,然后转化为C-1的多层纤维聚集体,进一步转化为C-M上方的纤维编织结构和蜘蛛网结构的聚集体。粘度的变异与聚集体的转化密切相关。

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