A comparison between metal supported c-ZrO2 and CeO2
Abstract
We present periodic density-functional theory calculations within the GGA Hamiltonian for monolayers of Pd and Pt supported on the {111} surfaces of cubic-ZrO2 and CeO2. We find that the adsorption energies for the Pd-layer on both the zirconia and ceria supports are ca. 200 kJ mol−1, while the corresponding adsorption energies for the Pt-layers are ca. 400 kJ mol−1. Our calculations also predict that the Pt–Pt interactions are three times stronger (∼300 kJ mol−1) than the corresponding Pd–Pd interactions, explaining the different cluster shapes and metal growth modes observed experimentally. Our calculations indicate that the electronic structure of the support determines the geometrical structure of the interface: a tilting of ca. 20° compared to the underlaying ZrO2 substrate is identified, which is not observed for the CeO2 substrate. Furthermore, we propose that the bonding character between the metal ad-layers and the