Bhattacharyya Somnath, De Simanta
Department of Mathematics, Indian Institute of Technology Kharagpur, Kharagpur-721302, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Sep;92(3):032309. doi: 10.1103/PhysRevE.92.032309. Epub 2015 Sep 24.
The influence of solid polarization on the electrophoresis of a uniformly charged dielectric particle for finite values of the particle-to-fluid dielectric permittivity ratio is analyzed quantitatively without imposing the thin Debye length or weak-field assumption. Present analysis is based on the computation of the coupled Poisson-Nernst-Planck and Stokes equations in the fluid domain along with the Laplace equation within the solid. The electrophoretic velocity is determined through the balance of forces acting on the particle. The solid polarization of the charged particle produces a reduction on its electrophoretic velocity compared to a nonpolarizable particle of the same surface charge density. In accordance with the existing thin-layer analysis, our computed results for thin Debye layer shows that the solid polarization is important only when the applied electric field is strong. When the Debye length is in the order of the particle size, the electrophoretic velocity decreases with the rise of the particle permittivity and attains a saturation limit at large values of the permittivity. Our computed solution for electrophoretic velocity is in agreement with the existing asymptotic analyses based on a thin Debye layer for limiting cases.
在不采用德拜长度薄或弱场假设的情况下,定量分析了颗粒与流体介电常数比为有限值时,固体极化对均匀带电介电颗粒电泳的影响。目前的分析基于流体域中泊松 - 能斯特 - 普朗克方程与斯托克斯方程的耦合计算以及固体内部的拉普拉斯方程。通过作用在颗粒上的力的平衡来确定电泳速度。与具有相同表面电荷密度的不可极化颗粒相比,带电颗粒的固体极化会使其电泳速度降低。根据现有的薄层分析,我们对薄德拜层的计算结果表明,只有当施加的电场很强时,固体极化才重要。当德拜长度与颗粒尺寸相当时,电泳速度随颗粒介电常数的增加而降低,并在介电常数较大时达到饱和极限。我们计算得到的电泳速度解与基于薄德拜层的现有渐近分析在极限情况下一致。