Sarkar Sankar, Ohshima H, Gopmandal Partha P
Physics and Applied Mathematics Unit, Indian Statistical Institute, Kolkata - 700108, India.
Faculty of Pharmaceutical Sciences, Tokyo University of Science, Noda, Chiba 278-8510, Japan.
Langmuir. 2022 Jul 26;38(29):8943-8953. doi: 10.1021/acs.langmuir.2c01112. Epub 2022 Jul 13.
A theoretical study has been carried out on the electrophoresis of charged dielectric liquid droplets with an equipotential and hydrodynamically slipping surface moving in a quenched polymeric charged hydrogel medium. The liquid inside the droplet is electrically neutral. The Brinkman-Debye-Bueche model is employed to study the gel electrophoresis of such a hydrophobic and equipotential liquid droplet considering the long-range hydrodynamic interaction between a migrating droplet and the gel skeleton. Within the weak field and Debye-Hückel electrostatic framework, we derive an original closed-form expression for electrophoretic mobility, which further recovers the existing mobility expressions derived under several limiting conditions. The derived expressions for electrophoretic mobility explicitly involve exponential integrals, which are not so convenient for practical applications. Thus, the exact forms of the electrophoretic mobility under various electrohydrodynamic conditions are further approximated to make them free from exponential integrals. The approximate forms are found to be in excellent agreement with the exact results with maximum relative errors of about 1.5%.
对带电荷的介电液滴在淬火聚合带电水凝胶介质中移动时的电泳现象进行了理论研究。液滴内部的液体呈电中性。采用布林克曼 - 德拜 - 比彻模型来研究这种疏水且等电位液滴的凝胶电泳,考虑了迁移液滴与凝胶骨架之间的长程流体动力相互作用。在弱场和德拜 - 休克尔静电框架内,我们推导出了电泳迁移率的原始封闭形式表达式,该表达式进一步恢复了在几种极限条件下得出的现有迁移率表达式。推导得出的电泳迁移率表达式明确涉及指数积分,这在实际应用中不太方便。因此,进一步对各种电流体动力学条件下电泳迁移率的精确形式进行近似,使其不含指数积分。发现近似形式与精确结果高度吻合,最大相对误差约为1.5%。