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首页> 外文期刊>Journal of Colloid and Interface Science >Effects of electrolyte concentration and counterion valence on the microstructural flow regimes in dilute cetyltrimethylammonium tosylate micellar solutions
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Effects of electrolyte concentration and counterion valence on the microstructural flow regimes in dilute cetyltrimethylammonium tosylate micellar solutions

机译:电解质浓度和抗衡价对十六烷基三甲基甲苯磺酸甲苯磺酸盐胶束溶液中微结构流态的影响

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摘要

The shear thickening behavior and the transition to shear thinning are examined in dilute cetyltrimethylammonium tosylate (CTAT) micellar solutions as a function of surfactant concentration and ionic strength using electrolytes with different counterion valence. Newtonian behavior at low shear rates, followed by shear thickening and shear thinning at higher shear rates, are observed at low and intermediate surfactant and electrolyte concentrations. Shear thickening diminishes with increasing surfactant concentration and ionic strength. At higher surfactant or electrolyte concentration, only a Newtonian region followed by shear thinning is detected. A generalized flow diagram indicates two controlling regimes: one in which electrostatic screening dominates and induces micellar growth, and another, at higher electrolyte and surfactant concentrations, where chemical equilibrium among electrolyte and surfactant counterions controls the rheological behavior by modifying micellar breaking and reforming. Analysis of the shear thickening behavior reveals that not only a critical shear rate is required for shear thickening, but also a critical deformation, which appears to be unique for all systems examined, within experimental error. Moreover, a superposition of the critical shear rate for shear thickening with surfactant and electrolyte concentration is reported.
机译:使用具有不同抗衡离子价态的电解质,在稀十六烷基三甲基甲苯磺酸甲苯磺酸盐(CTAT)胶束溶液中检测了剪切增稠行为和向剪切稀化的转变,该变化与表面活性剂浓度和离子强度有关。在低和中等表面活性剂和电解质浓度下,观察到低剪切速率下的牛顿行为,然后在较高剪切速率下出现剪切增稠和剪切稀化。剪切增厚随着表面活性剂浓度和离子强度的增加而减小。在较高的表面活性剂或电解质浓度下,仅检测到牛顿区域,然后剪切稀化。通用流程图显示了两种控制方式:一种是静电筛选起主导作用,并诱导胶束生长;另一种是在较高的电解质和表面活性剂浓度下,其中电解质和表面活性剂抗衡离子之间的化学平衡通过改变胶束断裂和重整来控制流变行为。对剪切增稠行为的分析表明,不仅剪切增稠需要临界剪切速率,而且在实验误差范围内,临界变形也对所有检查的系统来说都是唯一的。此外,还报道了用于剪切增稠的临界剪切速率与表面活性剂和电解质浓度的叠加。

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