Exact Analytical Expressions for the Potential of Electrical Double Layer Interactions for a Sphere−Plate System
Author(s) -
Shihong Lin,
Mark R. Wiesner
Publication year - 2010
Publication title -
langmuir
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.042
H-Index - 333
eISSN - 1520-5827
pISSN - 0743-7463
DOI - 10.1021/la103046w
Subject(s) - superposition principle , range (aeronautics) , constant (computer programming) , double layer (biology) , physics , ionic strength , mathematical analysis , classical mechanics , layer (electronics) , mathematics , chemistry , materials science , nanotechnology , computer science , aqueous solution , composite material , programming language
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.
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