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Variations in Structure Explain the Viscometric Behavior of AOT Microemulsions at Low Water/AOT Molar Ratios

机译:结构变化解释了低水/ AOT摩尔比下AOT微乳的粘度行为

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摘要

The viscosity of AOT/water/decane water-in-oil microemulsions exhibits a well-known maximum as a function of water/AOT molar ratio, which is usually attributed to increased attractions among nearly spherical droplets. The maximum can be removed by adding salt or by changing the oil to CCl4. Systematic small-angle X-ray scattering (SAXS) measurements have been used to monitor the structure of the microemulsion droplets in the composition regime where the maximum appears. On increasing the droplet concentration, the scattering intensity is found to scale with the inverse of the wavevector, a behavior which is consistent with cylindrical structures. The inverse wavevector scaling is not observed when the molar ratio is changed, moving the system away from the value corresponding to the viscosity maximum. It is also not present in the scattering from systems containing enough added salt to essentially eliminate the viscosity maximum. An asymptotic analysis of the SAXS data, complemented by some quantitative modeling, is consistent with cylindrical growth of droplets as their concentration is increased. Such elongated structures are familiar from related AOT systems in which the sodium counterion has been exchanged for a divalent one. However, the results of this study suggest that the formation of non-spherical aggregates at low molar ratios is an intrinsic property of AOT.
机译:作为水/ AOT摩尔比的函数,AOT /水/癸烷油包水型微乳液的粘度表现出众所周知的最大值,这通常归因于近球形液滴之间的吸引力增加。可以通过添加盐或将油换成CCl4来去除最大值。系统的小角度X射线散射(SAXS)测量已用于监测出现最大浓度的组分状态下的微乳液液滴的结构。在增加液滴浓度时,发现散射强度与波矢的倒数成比例,这与圆柱结构一致。当摩尔比改变时,未观察到逆波矢量定标,从而使系统远离与最大粘度相对应的值。在含有足够添加的盐以基本上消除最大粘度的系统的散射中也不存在它。 SAXS数据的渐近分析,加上一些定量建模,与液滴浓度增加时圆柱状生长相一致。这种伸长的结构从相关的AOT系统中是熟悉的,其中钠抗衡离子已经交换成二价的。但是,这项研究的结果表明,低摩尔比的非球形聚集体的形成是AOT的固有特性。

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