Hijnen Niek, Clegg Paul S
School of Physics & Astronomy, University of Edinburgh, Peter Guthrie Tait Road, Edinburgh EH9 3FD, UK.
Gels. 2018 Feb 2;4(1):15. doi: 10.3390/gels4010015.
We demonstrate experimentally that a phase-separating host solvent can be used to organize colloidal rods into different cluster and network states. The rods are silica sphero-cylinders which are preferentially wet by the water-rich phase of an oil⁻water binary liquid system. By beginning with the rods dispersed in the single-fluid phase and then varying the temperature to enter the demixed regime, a precisely chosen volume of water-rich phase can be created. We then show how this can be used to create independent clusters of rods, a percolating network, a network of clusters or a system that undergoes hindered phase separation. These different modes are selected by choosing the relative volumes of the rods and the water-rich phase and by the timing of the temperature change.
我们通过实验证明,一种发生相分离的主体溶剂可用于将胶体棒组装成不同的簇状和网络状结构。这些棒是二氧化硅球柱体,在油水二元液体体系的富水相中具有优先润湿性。从棒分散在单一流体相开始,然后改变温度进入两相分离状态,就可以产生精确选定体积的富水相。接着我们展示了如何利用这一点来创建独立的棒簇、渗流网络、簇网络或经历受阻相分离的体系。通过选择棒和富水相的相对体积以及温度变化的时机,可以实现这些不同的模式。