Verberg Rolf, Yeomans Julia M, Balazs Anna C
Chemical and Petroleum Engineering Department, University of Pittsburgh, Pittsburgh, PA 15261, USA.
J Chem Phys. 2005 Dec 8;123(22):224706. doi: 10.1063/1.2133733.
We develop a hybrid computational approach for simulating mixtures of binary fluids and mobile, submicron particles. The model couples a lattice Boltzmann method for the binary fluid with a Brownian dynamics model for the particles. The particles can exhibit preferential wetting interactions with the different components of the fluid. As an illustration of the method, we carry out simulations in two dimensions to compare the spinodal decomposition of a pure binary fluid with the phase separation of binary blends that contain either fixed or mobile particles. We then isolate conditions where the flow of a binary fluid/particle mixture past surfaces with well-defined asperities leads to the formation of monodisperse droplets, which encapsulate the nanoparticles. The findings provide guidelines for creating multiphase emulsions with well-controlled morphologies.
我们开发了一种混合计算方法,用于模拟二元流体与可移动亚微米颗粒的混合物。该模型将用于二元流体的格子玻尔兹曼方法与用于颗粒的布朗动力学模型相结合。颗粒可以与流体的不同组分表现出优先的润湿相互作用。作为该方法的一个示例,我们在二维中进行模拟,以比较纯二元流体的旋节线分解与包含固定或可移动颗粒的二元共混物的相分离。然后,我们确定了二元流体/颗粒混合物流过具有明确粗糙度的表面时会形成单分散液滴的条件,这些液滴会包裹纳米颗粒。这些发现为创建具有形态良好控制的多相乳液提供了指导方针。