Department of Chemical Engineering, National Taiwan University, Taipei, Taiwan.
Electrophoresis. 2013 Mar;34(5):785-91. doi: 10.1002/elps.201200370. Epub 2013 Jan 30.
Adopting a Brinkman fluid model, we analyzed the electrophoresis of a charged-regulated, bi-functional particle containing both acidic and basic functional groups in a gel solution. Both the long-range hydrodynamic effect arising from the liquid drag and the short-range steric effect from particle-polymer interaction are considered. The type of particle considered is capable of simulating both biocolloids such as microorganisms and cells, and particles with adsorbed polyelectrolyte or membrane layer. Our model describes successfully the experimental data in the literature. The presence of gel has the effect of reducing the particle mobility and alleviating double-layer polarization so that the particle behavior is less complicated than that in the case where gel is absent. On the other hand, both the quantitative and qualitative behaviors of a particle depend highly on solution pH and background salt concentration, yielding interesting and significant results. These results provide valuable information for both experimental data interpretation and electrophoresis devices design.
采用 Brinkman 流体模型,我们分析了在凝胶溶液中带有酸性和碱性官能团的带电调控双功能粒子的电泳。同时考虑了由液体阻力引起的长程水动力效应和由粒子-聚合物相互作用引起的短程空间位阻效应。所考虑的粒子类型能够模拟生物胶体,如微生物和细胞,以及带有吸附聚电解质或膜层的粒子。我们的模型成功地描述了文献中的实验数据。凝胶的存在会降低粒子的迁移率并减轻双层极化,从而使粒子的行为比没有凝胶时更简单。另一方面,粒子的定量和定性行为高度依赖于溶液 pH 值和背景盐浓度,得出了有趣且重要的结果。这些结果为实验数据解释和电泳设备设计提供了有价值的信息。