Thermodynamics of the atomic distribution in Pt3Pd2, Pt2Pd3 and their corresponding (111) surfaces

Publication date

2021

Authors

Meerholz, Kyle
Santos-Carballal, David
Terranova, Umberto
Falch, Anzel
van Sittert, Cornelia G.C.E.
de Leeuw, Nora H.ISNI 0000000124340366

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by_nc

Abstract

In this study, we have developed solid-state models of platinum and palladium bimetallic catalysts, Pt3Pd2 and Pt2Pd3, which are rapidly thermally annealed at 800 °C. These models were constructed by determining all the unique atomic configurations in a 2 × 2 × 1 supercell, using the program Site-Occupation Disorder (SOD), and optimized with the General Utility Lattice Program (GULP) using Sutton-Chen interatomic potentials. Each catalyst had 101 unique bulk models that were developed into surface models, which were constructed using the two-region surface technique before the surface energies were determined. The planes and compositions with lowest surface energies were chosen as the representative models for the surface structure of the bimetallic catalysts. These representative models will now be used in a computational study of the HyS process for the production of hydrogen.

Keywords

Catalyst, HyS process, Palladium, Platinum, Site-occupation disorder, Solid-state, General Chemistry

Citation

Meerholz, K, Santos-Carballal, D, Terranova, U, Falch, A, van Sittert, C G C E & de Leeuw, N H 2021, 'Thermodynamics of the atomic distribution in Pt 3 Pd 2, Pt 2 Pd 3 and their corresponding (111) surfaces', South African Journal of Chemistry, vol. 74, pp. 36-41. https://doi.org/10.17159/0379-4350/2021/V74A7