Bhattacharjee S, Elimelech M
School of Engineering and Applied Science, University of California, 5732 Boelter Hall, Los Angeles, California, 90095-1593
J Colloid Interface Sci. 1997 Sep 15;193(2):273-85. doi: 10.1006/jcis.1997.5076.
A novel method, the surface element integration (SEI), is developed to determine the van der Waals and electrostatic double layer interactions between a particle and an infinite flat plate from the corresponding interactions per unit area between two infinite flat plates. Comparison with the Hamaker expression for nonretarded van der Waals interaction reveals that the new technique gives the exact interaction energy between a spherical particle and a flat plate. Available analytical expressions for the electrostatic double layer interaction energy between two infinite flat plates, based on the linearized Poisson-Boltzmann equation, are used in SEI to obtain the sphere-flat plate interaction energy. These sphere-flat plate interaction energies determined using SEI are compared with the corresponding interaction energies obtained from a detailed numerical solution of the Poisson-Boltzmann equation based on finite element analysis. The comparisons reveal that SEI scales the flat plate interaction to the corresponding sphere-flat plate geometry exactly, while the scaling based on the conventional Derjaguin approximation technique grossly overpredicts the interaction energy for small particles and low electrolyte concentrations. Copyright 1997 Academic Press. Copyright 1997Academic Press
一种新的方法——表面元积分法(SEI)被开发出来,用于根据两个无限大平板之间的单位面积相应相互作用来确定粒子与无限大平板之间的范德华相互作用和静电双层相互作用。与非延迟范德华相互作用的哈梅克表达式进行比较表明,新技术给出了球形粒子与平板之间的确切相互作用能。基于线性化泊松 - 玻尔兹曼方程的两个无限大平板之间静电双层相互作用能的现有解析表达式被用于表面元积分法中,以获得球 - 平板相互作用能。将使用表面元积分法确定的这些球 - 平板相互作用能与基于有限元分析从泊松 - 玻尔兹曼方程的详细数值解中获得的相应相互作用能进行比较。比较结果表明,表面元积分法能准确地将平板相互作用缩放至相应的球 - 平板几何结构,而基于传统德亚金近似技术的缩放则在小粒子和低电解质浓度情况下严重高估了相互作用能。版权所有1997年学术出版社。版权所有1997年学术出版社