Kuijk Anke, Troppenz Thomas, Filion Laura, Imhof Arnout, van Roij René, Dijkstra Marjolein, van Blaaderen Alfons
Soft Condensed Matter, Debye Institute for Nanomaterials Science, Department of Physics and Astronomy, Utrecht University, Princetonplein 5, 3584 CC Utrecht, The Netherlands.
Soft Matter. 2014 Sep 7;10(33):6249-55. doi: 10.1039/c4sm00957f. Epub 2014 Jul 14.
We examine the effect of external electric fields on the behavior of colloidal silica rods. We find that the electric fields can be used to induce para-nematic and para-smectic phases, and to reduce the number of defects in smectic phases. At high field strengths, a new crystal structure was observed that consisted of strings of rods ordered in a hexagonal pattern in which neighboring rods were shifted along their length. We also present a simple model to describe this system, which we used in computer simulations to calculate the phase diagram for rods of L/D = 6, with L the end-to-end length of the rods and D the diameter of the rods. Our theoretical predictions for the phase behavior agree well with the experimental observations.
我们研究了外部电场对胶体二氧化硅棒行为的影响。我们发现电场可用于诱导向列相和近晶相,并减少近晶相中的缺陷数量。在高场强下,观察到一种新的晶体结构,它由呈六边形排列的棒串组成,相邻棒沿其长度方向发生位移。我们还提出了一个简单模型来描述这个系统,并将其用于计算机模拟,以计算长径比(L/D = 6)(其中(L)为棒的端到端长度,(D)为棒的直径)的棒的相图。我们对相行为的理论预测与实验观察结果吻合良好。