Chun Byoungjin, Chun Myung-Suk
Complex Fluids Laboratory, Advanced Materials Research Division, Korea Institute of Science and Technology (KIST), Seoul 02792, Korea.
Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Korea.
Micromachines (Basel). 2021 Nov 29;12(12):1475. doi: 10.3390/mi12121475.
In this study, the model framework that includes almost all relevant parameters of interest has been developed to quantify the electrostatic potential and charge density occurring in microchannels grafted with polyelectrolyte brushes and simultaneously filled with polyelectrolyte dispersion. The brush layer is described by the Alexander-de Gennes model incorporated with the monomer distribution function accompanying the quadratic decay. Each ion concentration due to mobile charges in the bulk and fixed charges in the brush layer can be determined by multi-species ion balance. We solved 2-dimensional Poisson-Nernst-Planck equations adopted for simulating electric field with ion transport in the soft channel, by considering anionic polyelectrolyte of polyacrylic acid (PAA). Remarkable results were obtained regarding the brush height, ionization, electrostatic potential, and charge density profiles with conditions of brush, dispersion, and solution pH. The Donnan potential in the brush channel shows several times higher than the surface potential in the bare channel, whereas it becomes lower with increasing PAA concentration. Our framework is fruitful to provide comparative information regarding electrostatic interaction properties, serving as an important bridge between modeling and experiments, and is possible to couple with governing equations for flow field.
在本研究中,已开发出包含几乎所有相关感兴趣参数的模型框架,以量化接枝有聚电解质刷并同时填充有聚电解质分散体的微通道中出现的静电势和电荷密度。刷层由结合了伴随二次衰减的单体分布函数的Alexander-de Gennes模型描述。本体中移动电荷和刷层中固定电荷引起的每种离子浓度可通过多物种离子平衡来确定。我们通过考虑聚丙烯酸(PAA)这种阴离子聚电解质,求解了用于模拟软通道中电场与离子传输的二维泊松-能斯特-普朗克方程。在刷层、分散体和溶液pH条件下,关于刷层高度、电离、静电势和电荷密度分布获得了显著结果。刷层通道中的唐南电位比裸通道中的表面电位高出几倍,而随着PAA浓度的增加,它会降低。我们的框架有助于提供有关静电相互作用特性的比较信息,作为建模与实验之间的重要桥梁,并且有可能与流场控制方程耦合。