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Direct Measurements of the Effects of Salt and Surfactant on Interaction Forces between Colloidal Particles at Water-Oil Interfaces

机译:盐和表面活性剂对水-油界面处胶体颗粒之间相互作用力的影响的直接测量

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摘要

The forces between colloidal particles at a decane-water interface, in the presence of low concentrations of a monovalent salt (NaCl) and the surfactant sodium dodecyl sulfate (SDS) in the aqueous subphase, have been studied using laser tweezers. In the absence of electrolyte and surfactant, particle interactions exhibit a long-range repulsion, yet the variation of the interaction for different particle pairs is found to be considerable. Averaging over several particle pairs was hence found to be necessary to obtain a reliable assessment of the effects of salt and surfactant. It has previously been suggested that the repulsion is consistent with electrostatic interactions between a small number of dissociated charges in the oil phase, leading to a decay with distance to the power -4 and an absence of any effect of electrolyte concentration. However, the present work demonstrates that increasing the electrolyte concentration does yield, on average, a reduction of the magnitude of the interaction force with electrolyte concentration. This implies that charges on the water side also contribute significantly to the electrostatic interactions. An increase in the concentration of SDS leads to a similar decrease of the interaction force. Moreover, the repulsion at fixed SDS concentrations decreases over longer times. Finally, measurements of three-body interactions provide insight into the anisotropic nature of the interactions. The unique time-dependent and anisotropic interactions between particles at the oil-water interface allow tailoring of the aggregation kinetics and structure of the suspension structure.
机译:使用激光镊子研究了在含水亚相中存在低浓度一价盐(NaCl)和表面活性剂十二烷基硫酸钠(SDS)的情况下,癸烷-水界面处胶体颗粒之间的力。在不存在电解质和表面活性剂的情况下,颗粒之间的相互作用表现出远距离排斥力,但是发现不同颗粒对之间相互作用的变化很大。因此,发现必须对几个颗粒对取平均值才能获得对盐和表面活性剂作用的可靠评估。以前已经提出排斥作用与油相中少量离解电荷之间的静电相互作用相一致,从而导致距功率-4距离的衰减并没有电解质浓度的任何影响。但是,目前的工作表明,平均而言,增加电解质浓度确实会降低相互作用力随电解质浓度的大小。这意味着水侧的电荷也显着促进静电相互作用。 SDS浓度的增加会导致相互作用力的相似降低。此外,固定SDS浓度下的排斥力会随着时间的推移而降低。最后,三体相互作用的测量提供了对相互作用的各向异性性质的了解。油-水界面处的粒子之间独特的时间相关性和各向异性相互作用可以调整聚集动力学和悬浮结构的结构。

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