2008 Annual Meeting
(643h) The Binding of Hg on Pd Binary Alloys and Monolayers
Authors
Density Functional Theory (DFT) calculations have been performed to predict the binding mechanism of element mercury on the binary alloys PdAu(111), PdAg(111), PdCu(111). The Pd surface has been found to be more reactive than the Au, Ag and Cu surfaces, although small additions of Au, Ag and Cu to bulk Pd surface increases the overall mercury binding energy. Specifically, it has been found that Au atoms in the PdAu alloys are most beneficial to Hg adsorption when they remain below the surface layer. This prompted studies using a monolayer of Pd overlayed on an Au substrate to further enhance binding compared to the PdAu alloys. The use of monolayers not only removes the dependence on the random atomic arrangement, but it may also lead to a higher capacity because of the surface composition uniformity and subsequent increased number of binding sites.