Anekal Samartha G, Bevan Michael A
Department of Chemical Engineering, Texas A&M University, College Station, Texas 77843-3122, USA.
J Chem Phys. 2005 Jan 15;122(3):34903. doi: 10.1063/1.1830012.
This paper presents Stokesian dynamics simulations of experiments involving one or two charged colloids near either a single charged wall or confined between parallel charged walls. Equilibrium particle-particle and particle-wall interactions are interpreted from dynamic particle trajectories in simulations involving (1) a single particle levitated above a wall, (2) two particles below a wall, and (3) two particles confined between two parallel walls. By specifying only repulsive electrostatic Derjaguin-Landau-Verwey-Overbeek (DLVO) potentials and including multibody hydrodynamics, we successfully recover expected potentials in some cases, while anomalous attraction is observed in other cases. Attraction inferred in the latter simulations displays quantitative agreement with literature measurements when particle dynamics are interpreted using reported analyses. Because anomalous attraction is reproduced in simulations using only electrostatic repulsive DLVO potentials, our results reveal the one-dimensional analyses to be invalid for configurations that are inherently multidimensional via multibody hydrodynamics. Parameters related to experimental sampling of particle dynamics are also found to be critical for obtaining accurate potentials. We explain the anomalous attraction in each experiment using effective potentials, which can be employed in an a priori fashion to assist the confident design of future experiments involving interfacial and confined colloids. Ultimately, our findings reveal the importance of dimensionality and multibody hydrodynamics for understanding nonequilibrium dynamics of colloids near surfaces.
本文展示了对涉及一个或两个带电胶体靠近单个带电壁或限制在平行带电壁之间的实验进行的斯托克斯动力学模拟。在涉及(1)悬浮在壁上方的单个粒子、(2)壁下方的两个粒子以及(3)限制在两个平行壁之间的两个粒子的模拟中,从动态粒子轨迹解释平衡的粒子 - 粒子和粒子 - 壁相互作用。通过仅指定排斥性静电德亚金 - 朗道 - 韦弗 - 奥弗贝克(DLVO)势并纳入多体流体动力学,我们在某些情况下成功恢复了预期的势,而在其他情况下观察到异常吸引。当使用报告的分析解释粒子动力学时,后一种模拟中推断出的吸引与文献测量结果显示出定量一致性。由于仅使用静电排斥性DLVO势的模拟中再现了异常吸引,我们的结果表明,对于通过多体流体动力学本质上是多维的构型,一维分析是无效的。还发现与粒子动力学实验采样相关的参数对于获得准确的势至关重要。我们使用有效势解释每个实验中的异常吸引,有效势可以以先验方式用于协助对涉及界面和受限胶体的未来实验进行可靠设计。最终,我们的发现揭示了维度和多体流体动力学对于理解表面附近胶体非平衡动力学的重要性。