Duke University, Department of Civil and Environmental Engineering, P.O. Box 90287, Durham, North Carolina 27708, United States.
Langmuir. 2010 Nov 16;26(22):16638-41. doi: 10.1021/la103046w. Epub 2010 Oct 1.
Exact, closed-form analytical expressions are presented for evaluating the potential energy of electrical double layer (EDL) interactions between a sphere and an infinite flat plate for three different types of interactions: constant potential, constant charge, and an intermediate case as given by the linear superposition approximation (LSA). By taking advantage of the simpler sphere-plate geometry, simplifying assumptions used in the original Derjaguin approximation (DA) for sphere-sphere interaction are avoided, yielding expressions that are more accurate and applicable over the full range of κa. These analytical expressions are significant improvements over the existing equations in the literature that are valid only for large κa because the new equations facilitate the modeling of EDL interactions between nanoscale particles and surfaces over a wide range of ionic strength.
本文给出了一种精确的、闭式解析表达式,用于计算球体与无限平板之间的双电层(EDL)相互作用的位能,包括三种不同的相互作用类型:恒电位、恒电荷和线性叠加近似(LSA)给出的中间情况。通过利用更简单的球体-平板几何形状,避免了原始德加古因近似(DA)中用于球体-球体相互作用的简化假设,得到了更准确、适用范围更广的表达式,适用于整个 κa 范围。与文献中现有的仅在大 κa 情况下有效的方程相比,这些解析表达式有了显著的改进,因为新方程有助于在广泛的离子强度范围内对纳米颗粒和表面之间的 EDL 相互作用进行建模。