School of Chemistry, Monash University , Clayton 3800, Australia.
Oil and Petroleum Chemistry Department, Kazan National Research Technological University , Kazan, Russia.
Langmuir. 2016 Nov 29;32(47):12423-12433. doi: 10.1021/acs.langmuir.6b01735. Epub 2016 Sep 16.
Solutions of extended, flexible cylindrical micelles, often known as wormlike micelles, have great potential as the base for viscoelastic complex fluids in oil recovery, drilling, and lubrication. Here, we study the morphology and nanostructural characteristics of a model wormlike micellar fluid formed from erucyl amidopropyl betaine (EAPB) in water as a function of a diverse range of additives relevant to complex fluid formulation. The wormlike micellar dispersions are extremely oleo-responsive, with even as little as 0.1% hydrocarbon oil causing a significant disruption of the network and a decrease in zero-shear viscosity of around 100-fold. Simple salts have little effect on the local structure of the wormlike micelles but result in the formation of fractal networks at larger length scales, whereas even tiny amounts of small organic species such as phenol can cause unexpected phase transitions. When forming mixtures with other surfactants, a vast array of self-assembled structures are formed, from spheres to ellipsoids, lamellae, and vesicles, offering the ultimate sensitivity in designing formulations with specific nanostructural characteristics.
扩展的、柔韧的圆柱形胶束溶液,通常被称为蠕虫状胶束,在采油、钻井和润滑等领域作为粘弹性复杂流体的基础具有巨大的潜力。在这里,我们研究了在水中形成的一种模型蠕虫状胶束流体的形态和纳米结构特征,这种流体是由芥基酰胺丙基甜菜碱(EAPB)形成的,作为复杂流体配方中相关添加剂的多种功能的函数。蠕虫状胶束分散体对油非常敏感,即使只有 0.1%的碳氢油也会导致网络的严重破坏,零剪切粘度降低约 100 倍。简单的盐对蠕虫状胶束的局部结构几乎没有影响,但会在更大的长度尺度上形成分形网络,而即使是少量的小分子物质,如苯酚,也会导致意想不到的相变。当与其他表面活性剂形成混合物时,会形成从球体到椭球体、层状和囊泡等各种自组装结构,为设计具有特定纳米结构特征的配方提供了最大的灵敏度。