Hijnen Niek, Clegg Paul S
School of Physics and Astronomy, The University of Edinburgh , Mayfield Road, Edinburgh EH9 3JZ, United Kingdom.
Langmuir. 2014 May 27;30(20):5763-70. doi: 10.1021/la501060w. Epub 2014 May 15.
We have studied shear-induced aggregation of colloidal silica particles suspended in a variety of partially miscible liquid mixtures. The shared characteristic of the investigated systems is that after liquid-liquid phase separation of the binary liquid mixtures one phase completely wets the particles. We have explored compositions where there are insufficient quantities of the particle wetting component to induce phase separation. As the proportion of the wetting component is increased, we find a significant concentration range where shear-induced aggregation takes place. The macroscopic characteristics of this phenomenon are demonstrated, for which observations were greatly facilitated by mostly using liquid pairs partially miscible at room temperature. Measurements revealing the adsorption of the minority component to colloidal particles show that capillary condensation between particles causes the observed aggregation. The likely microscopic features underlying this aggregation behavior are then discussed. Finally, the overall picture of these systems is sketched as a nonequilibrium liquid-liquid phase diagram, in which outside the binodal there is a region of shear-induced aggregation.
我们研究了悬浮在各种部分互溶液体混合物中的胶体二氧化硅颗粒的剪切诱导聚集。所研究体系的共同特征是,二元液体混合物发生液-液相分离后,其中一相完全润湿颗粒。我们探索了颗粒润湿组分数量不足以诱导相分离的组成。随着润湿组分比例的增加,我们发现了一个显著的浓度范围,在此范围内会发生剪切诱导聚集。通过主要使用在室温下部分互溶的液体对,极大地促进了对这一现象宏观特征的观察。揭示少数组分在胶体颗粒上吸附的测量结果表明,颗粒间的毛细管凝聚导致了观察到的聚集现象。然后讨论了这种聚集行为背后可能的微观特征。最后,将这些体系的整体情况描绘为一个非平衡液-液相图,在双节线之外存在一个剪切诱导聚集区域。