Davies Gary B, Krüger Timm, Coveney Peter V, Harting Jens, Bresme Fernando
Centre for Computational Science, University College London, 20 Gordon Street, London WC1H 0AJ, UK.
Soft Matter. 2014 Sep 21;10(35):6742-8. doi: 10.1039/c4sm01124d.
Manufacturing new soft materials with specific optical, mechanical and magnetic properties is a significant challenge. Assembling and manipulating colloidal particles at fluid interfaces is a promising way to make such materials. We use lattice-Boltzmann simulations to investigate the response of magnetic ellipsoidal particles adsorbed at liquid-liquid interfaces to external magnetic fields. We provide further evidence for the first-order orientation phase transition predicted by Bresme and Faraudo [Journal of Physics: Condensed Matter, 2007, 19, 375110]. We show that capillary interface deformations around the ellipsoidal particle significantly affect the tilt-angle of the particle for a given dipole-field strength, altering the properties of the orientation transition. We propose scaling laws governing this transition, and suggest how to use these deformations to facilitate particle assembly at fluid-fluid interfaces.
制造具有特定光学、机械和磁性特性的新型软材料是一项重大挑战。在流体界面处组装和操控胶体颗粒是制造此类材料的一种很有前景的方法。我们使用格子玻尔兹曼模拟来研究吸附在液 - 液界面的磁性椭球体颗粒对外部磁场的响应。我们为Bresme和Faraudo [《物理学杂志:凝聚态物质》,2007年,19卷,375110] 预测的一阶取向相变提供了进一步的证据。我们表明,对于给定的偶极场强度,椭球体颗粒周围的毛细管界面变形会显著影响颗粒的倾斜角度,从而改变取向转变的特性。我们提出了控制这种转变的标度律,并建议如何利用这些变形来促进颗粒在流体 - 流体界面处的组装。