arXiv · chem-ph/9501002
Integral equation theory for the electrode-electrolyte interface with the central force water model. Results for an aqueous solution of sodium chloride
Abstract
The structure of an aqueous solution of sodium chloride at a planar electrode is investigated by integral equation techniques. With the central force water model the aqueous electrolyte is modelled as a mixture of sodium and chloride ions and partially charged hydrogen and oxygen atoms interacting via effective spherically symmetric pair potentials. The bulk correlation functions are obtained from the Ornstein-Zernike equation. With the Wertheim-Lovett-Mou-Buff equation we have calculated the density profiles at the uncharged and charged electrode. Steric interactions between the differently sized ions and the ice-like water structure near the electrode dominates the ionic distribution. This model electrolyte also responds differently to opposite charges on the electrode.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
M. Vossen, F. Forstmann. 1995-01-25. Integral equation theory for the electrode-electrolyte interface with the central force water model. Results for an aqueous solution of sodium chloride. https://doi.org/10.1080/00268979500102881
Cite the original work for its findings. Save a collection to share your selection of sources.