Department of Chemical Engineering, Colorado School of Mines, Golden, Colorado 80004, USA.
Langmuir. 2009 Dec 1;25(23):13376-83. doi: 10.1021/la903260r.
A quantitative study of the shear-induced phase separation of a polycation/anionic-nonionic micelle coacervate is presented. Simultaneous rheology and small-angle light scattering (SALS) measurements allow the elucidation of micrometer-scale phase separation under flow in three coacervate solutions. Below 18 degrees C, all three of the coacervate solutions are optically clear Newtonian fluids across the entire shear rate range investigated. Once a critical temperature range and/or shear rate is achieved, phase separation is observed in the small-angle light scattering images and the fluid exhibits shear thinning. Two definitive SALS patterns demonstrate the appearance of circular droplets at low shear rates near the critical temperature and ellipsoidal droplets at higher temperatures and shear rates. The shear-induced droplets range in size from approximately 1 to 4 mum. The ellipsoidal droplets have aspect ratios as high as 4. A conceptual picture in which shear flow extends the polyelectrolyte chains of the clear coacervate liquid phase is proposed. The extended chains create interpolyelectrolyte-micelle interactions and promote expulsion of small ions from the complex, resulting in the formation of micrometer-scale phase-separated droplets.
本文对聚阳离子/阴离子-非离子胶束凝聚物的剪切诱导相分离进行了定量研究。流变学和小角光散射(SALS)同步测量可阐明在三种凝聚物溶液中流动下微米级相分离。在 18°C 以下,三种凝聚物溶液在整个剪切速率范围内均为光学透明牛顿流体。一旦达到临界温度范围和/或剪切速率,就会在小角光散射图像中观察到相分离,并且流体表现出剪切变稀。两种明确的 SALS 模式表明,在接近临界温度的低剪切速率下出现圆形液滴,在较高温度和剪切速率下出现椭圆形液滴。剪切诱导的液滴尺寸约为 1 至 4 微米。椭圆形液滴的纵横比高达 4。提出了一种概念图,其中剪切流扩展了透明凝聚物液相中的聚电解质链。延伸的链产生了聚电解质-胶束相互作用,并促进了小离子从小复合物中的排出,从而形成了微米级的相分离液滴。