论文标题

胶体重量在不同平面界面的影响

Effect of colloidal weight at different planar interfaces

论文作者

Aporvari, Mehdi Shaffei, Callegari, Agnese, Saritas, Emine Ulku

论文摘要

在许多物理和生物系统中,颗粒和微生物在界面的接近度中移动。了解悬挂在接口接近界面的粒子的动力学不仅在概念上很重要,而且对于从废水处理到自组件的工业应用的实际应用至关重要。在这项工作中,我们在实验中研究了胶体重量对其动力学的影响,同时在各种液态固体和液态空气界面的近距离接近时移动。使用向上的磁力,我们改变了超顺磁胶体的有效重量。在水玻璃界面上,我们观察到扩散系数的预期下降随有效重量的增加。在液体空气界面上,而对于纯净的空气界面,扩散率和有效重量之间的依赖性微不足道,我们发现在溶液 - 空气界面的半脱液聚合物溶液中,粒子的扩散性表现出与液体固体接口处的相似的行为。我们实施了布朗动力学模拟,以支持我们的结果,并展示流体动力相互作用与静电界面排斥之间的相互作用如何解释实验结果。

In many physical and biological systems, particles and microorganisms move in the proximity of an interface. Understanding the dynamics of a particle suspended close to an interface is not only important conceptually but is crucial for practical applications ranging from the treatment of waste waters to industrial applications of self-assemblies. In this work, we experimentally investigate the effects of colloidal weight on its dynamics while moving in the close proximity of a variety of liquid-solid and liquid-air interfaces. Using an upward magnetic force, we change the effective weight of a superparamagnetic colloid. At water-glass interfaces, we observe the expected decrease of the diffusion coefficients with increasing effective weight. At liquid-air interfaces, while for a pure water-air interface there is a negligible dependency between the diffusivity and the effective weight, we find that in semi-dilute polymer solution at the solution-air interface the diffusivity of the particle shows similar behavior as those at liquid-solid interfaces. We implement a Brownian dynamics simulation to support our results and show how the interplay between hydrodynamic interactions and electrostatic interface repulsion explains the experimental results.

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