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带电和不带电布朗胶体在流体界面间的流体动力学相互作用。

Hydrodynamic interactions between charged and uncharged Brownian colloids at a fluid-fluid interface.

机构信息

Intel Corporation, Hillsboro, OR 97123, USA.

ExxonMobil Research and Engineering Company, Annandale, NJ, USA.

出版信息

J Colloid Interface Sci. 2022 Dec 15;628(Pt B):931-945. doi: 10.1016/j.jcis.2022.08.084. Epub 2022 Aug 23.

Abstract

HYPOTHESIS

The cluster formation and self-assembly of floating colloids at a fluid/fluid interface is a delicate force balance involving deterministic lateral interaction forces, viscous resistance to relative colloid motion along the surface and thermal (Brownian) fluctuations. As the colloid dimensions get smaller, thermal forces and associated drag forces become important and can affect the self assembly into ordered patterns and crystal structures that are the starting point for various materials applications.

NUMERICS

Langevin dynamic simulations for particle pairs straddling a liquid-liquid interface with a high viscosity contrast are presented to describe the lateral interfacial assembly of particles in Brownian and non-Brownian dominated regimes. These simulations incorporate capillary attraction, electrostatic repulsion, thermal fluctuations and hydrodynamic interactions (HI) between particles (including the effect of the particle immersion depth). Simulation results are presented for neutrally wetted particles which form a contact angle θ=90 at the interface.

FINDINGS

The simulation results suggest that clustering, fractal growth and particle ordering become favorable outcomes at critically large values of the Pe numbers, while smaller Pe numbers exhibit higher probabilities of final configurations where particle motion remains uncorrelated in space and particle pairs are found to be more widely separated especially upon the introduction of HI.

摘要

假设

在流体/流体界面处,悬浮胶体的聚团形成和自组装是一个微妙的力平衡过程,涉及确定性的侧向相互作用力、胶体沿表面相对运动的粘性阻力和热(布朗)涨落。随着胶体尺寸的减小,热作用力和相关的阻力变得重要,并且可能影响到自组装成有序模式和晶体结构,这是各种材料应用的起点。

数值方法

本文提出了用于跨越具有高粘度对比的液-液界面的粒子对的朗之万动力学模拟,以描述在布朗和非布朗主导的区域中粒子的侧向界面组装。这些模拟将毛细吸引力、静电排斥、热涨落和粒子之间的流体动力学相互作用(HI)(包括粒子浸深的影响)纳入其中。模拟结果针对中性润湿粒子进行了展示,这些粒子在界面处形成接触角θ=90。

研究结果

模拟结果表明,在 Pe 数临界大值时,聚类、分形生长和粒子有序排列成为有利的结果,而较小的 Pe 数表现出更高的最终构型的概率,其中粒子运动在空间上仍然不相关,并且粒子对之间的分离程度更大,特别是在引入 HI 时。

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