Keh Huan J, Huang You C
Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan, Republic of China.
J Colloid Interface Sci. 2005 Nov 1;291(1):282-91. doi: 10.1016/j.jcis.2005.04.108. Epub 2005 Jun 28.
The dynamic electrophoretic response of a spherical dielectric particle suspended in an electrolyte solution to a step change in the applied electrics field is analytically studied. The electrical double layer surrounding the particle may have either a small but finite thickness or a very large thickness relative to the particle radius. For the case of electrophoresis of a particle with a thin double layer, the local electroosmotic velocity at the outer edge of the double layer evolving with time after the external field is imposed is used as an apparent slip boundary condition at the particle surface so that the unsteady equation of motion for the fluid flow outside the double layer is solved. Closed-form formulas for the transient electrophoretic mobility of the particle are derived as functions of relevant parameters. The results demonstrate that, when the double layer surrounding the particle is relatively thin, the normalized electrophoretic mobility at a given dimensionless time decreases monotonically with a decrease in the parameter kappaa, where kappa(-1) is the Debye screening length and a is the particle radius. When the double layer of the particle is relatively thick, the particle mobility can have magnitudes comparable to those for a particle with a thin double layer in the initial stage, but will become much smaller afterward. In general, the effect of the relaxation time for transient electrophoresis is negligible, regardless of the value of kappaa.
对悬浮于电解质溶液中的球形介电粒子在施加电场发生阶跃变化时的动态电泳响应进行了分析研究。围绕粒子的电双层相对于粒子半径可能具有小但有限的厚度,也可能具有非常大的厚度。对于具有薄双电层的粒子的电泳情况,在施加外部电场后,将双电层外边缘随时间演变的局部电渗速度用作粒子表面的表观滑移边界条件,从而求解双电层外流体流动的非定常运动方程。推导了粒子瞬态电泳迁移率的封闭形式公式,作为相关参数的函数。结果表明,当围绕粒子的双电层相对较薄时,在给定的无量纲时间下,归一化电泳迁移率随参数κa的减小而单调下降,其中κ⁻¹是德拜屏蔽长度,a是粒子半径。当粒子的双电层相对较厚时,粒子迁移率在初始阶段可能具有与具有薄双电层的粒子相当的大小,但随后会变得小得多。一般来说,瞬态电泳的弛豫时间的影响可以忽略不计,无论κa的值如何。