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微米尺度下的颗粒/壁面电黏效应:实验、解析模型与数值模型之间的比较

Particle/wall electroviscous effects at the micron scale: comparison between experiments, analytical and numerical models.

作者信息

Hernández Meza J Manuel, Vélez-Cordero J Rodrigo, Ramírez Saito A, Aranda-Espinoza S, Arauz-Lara José L, Yáñez Soto Bernardo

机构信息

Instituto de Física, Universidad Autónoma de San Luis Potosí, Alvaro Obregón 64, 78000 San Luis Potosí, S.L.P., México.

Investigadores CONACYT-Instituto de Física, Universidad Autónoma de San Luis Potosí, Alvaro Obregón 64, 78000 San Luis Potosí, S.L.P., México.

出版信息

J Phys Condens Matter. 2021 Dec 13;34(9). doi: 10.1088/1361-648X/ac3cef.

Abstract

We report a experimental study of the motion of 1 m single particles interacting with functionalized walls at low and moderate ionic strengths conditions. The 3D particle's trajectories were obtained by analyzing the diffracted particle images (point spread function). The studied particle/wall systems include negatively charged particles interacting with bare glass, glass covered with polyelectrolytes and glass covered with a lipid monolayer. In the low salt regime (pure water) we observed a retardation effect of the short-time diffusion coefficients when the particle interacts with a negatively charged wall; this effect is more severe in the perpendicular than in the lateral component. The decrease of the diffusion as a function of the particle-wall distancewas similar regardless the origin of the negative charge at the wall. When surface charge was screened or salt was added to the medium (10 mM), the diffusivity curves recover the classical hydrodynamic behavior. Electroviscous theory based on the thin electrical double layer (EDL) approximation reproduces the experimental data except for small. On the other hand, 2D numerical solutions of the electrokinetic equations showed good qualitative agreement with experiments. The numerical model also showed that the hydrodynamic and Maxwellian part of the electroviscous total drag tend to zero as→ 0 and how this is linked with the merging of both EDL's at close proximity.

摘要

我们报告了一项关于1米单粒子在低离子强度和中等离子强度条件下与功能化壁相互作用运动的实验研究。通过分析衍射粒子图像(点扩散函数)获得了三维粒子的轨迹。所研究的粒子/壁系统包括带负电的粒子与裸玻璃、覆盖有聚电解质的玻璃以及覆盖有脂质单层的玻璃之间的相互作用。在低盐体系(纯水)中,当粒子与带负电的壁相互作用时,我们观察到短时间扩散系数的延迟效应;这种效应在垂直方向比在横向分量中更明显。扩散随粒子 - 壁距离的减小与壁上负电荷的来源无关。当表面电荷被屏蔽或向介质中添加盐(10 mM)时,扩散率曲线恢复到经典的流体动力学行为。基于薄电双层(EDL)近似的电粘性理论除了在小尺度上外,能够重现实验数据。另一方面,电动方程的二维数值解与实验显示出良好的定性一致性。数值模型还表明,随着→0,电粘性总阻力的流体动力学部分和麦克斯韦部分趋于零,以及这如何与紧邻处两个EDL的合并相关联。

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