Keh Huan J, Li Yu L
Department of Chemical Engineering, National Taiwan University, Taipei 10617, Taiwan, Republic of China.
Langmuir. 2007 Jan 30;23(3):1061-72. doi: 10.1021/la061517c.
An analytical study of diffusiophoresis in a homogeneous suspension of identical spherical charge-regulating particles with an arbitrary thickness of the electric double layers in a solution of a symmetrically charged electrolyte with a uniform prescribed concentration gradient is presented. The charge regulation due to association/dissociation reactions of ionogenic functional groups on the particle surface is approximated by a linearized regulation model, which specifies a linear relationship between the surface charge density and the surface potential. The effects of particle-particle electrohydrodynamic interactions are taken into account by employing a unit cell model, and the overlap of the double layers of adjacent particles is allowed. The electrokinetic equations that govern the electric potential profile, the ionic concentration distributions, and the fluid flow field in the electrolyte solution surrounding the particle in a unit cell are linearized assuming that the system is only slightly distorted from equilibrium. Using a regular perturbation method, these linearized equations are solved with the equilibrium surface charge density (or zeta potential) of the particle as the small perturbation parameter. Closed-form formulas for the diffusiophoretic velocity of the charge-regulating sphere correct to the second order of its surface charge density or zeta potential are derived. Our results indicate that the charge regulation effect on the diffusiophoretic mobility is quite sensitive to the boundary condition for the electric potential specified at the outer surface of the unit cell. For the limiting cases of a very dilute suspension and a very thin or very thick electric double layer, the particle velocity is independent of the charge regulation parameter.
本文给出了在具有均匀规定浓度梯度的对称带电电解质溶液中,对相同球形电荷调节颗粒的均匀悬浮液中扩散泳进行的分析研究。颗粒表面离子ogenic官能团的缔合/解离反应引起的电荷调节由线性化调节模型近似,该模型规定了表面电荷密度与表面电位之间的线性关系。通过采用单胞模型考虑颗粒-颗粒的电流体动力学相互作用,并允许相邻颗粒的双层重叠。假设系统仅略微偏离平衡,对控制单位晶胞中颗粒周围电解质溶液中的电势分布、离子浓度分布和流体流场的电动方程进行线性化。使用正则摄动法,以颗粒的平衡表面电荷密度(或zeta电位)作为小摄动参数求解这些线性化方程。推导了电荷调节球体扩散泳速度的封闭形式公式,精确到其表面电荷密度或zeta电位的二阶。我们的结果表明,电荷调节对扩散泳迁移率的影响对在单位晶胞外表面指定的电势边界条件非常敏感。对于非常稀的悬浮液以及非常薄或非常厚的双电层的极限情况,颗粒速度与电荷调节参数无关。