arXiv · 2106.07232
Effect of the metallicity on the capacitance of gold - aqueous sodium chloride interfaces
Abstract
Electrochemistry experiments have established that the capacitance of electrode-electrolyte interfaces is much larger for good metals such as gold and platinum than for carbon-based materials. Despite the development of elaborate electrode interaction potentials, to date molecular dynamics simulations were not able to capture this effect. Here we show that changing the width of the Gaussian charge distribution used to represent the atomic charges in gold is an effective way to tune its metallicity. Larger Gaussian widths lead to a capacitance of aqueous solutions (pure water and 1 molar NaCl) in good agreement with recent ab initio molecular dynamics results. For pure water, the increase in the capacitance is not accompanied with structural changes, while in the presence of salt the Na$^+$ cations tend to adsorb significantly on the surface. For a strongly metallic gold electrode, these ions can even form inner sphere complexes on hollow sites of the surface.
Explore related subjects
Keep this discovery
Alessandra Serva, Laura Scalfi, Benjamin Rotenberg, Mathieu Salanne. 2021-06-14. Effect of the metallicity on the capacitance of gold - aqueous sodium chloride interfaces. https://doi.org/10.1063/5.0060316
Cite the original work for its findings. Save a collection to share your selection of sources.