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Differences in solvation thermodynamics of oxygenates at Pt/Al2O3 perimeter versus Pt(111) terrace sites


ABSTRACT: Summary A prominent role of water in aqueous-phase heterogeneous catalysis is to modify free energies; however, intuition about how is based largely on pure metal surfaces or even homogeneous solutions. Using multiscale modeling with explicit liquid water molecules, we show that the influence of water on the free energies of adsorbates at metal/support interfaces is different than that on pure metal surfaces. We specifically compute free energies of solvation for methanol and its constituents on a Pt/Al2O3 catalyst and compare the results to analogous values calculated on a pure Pt catalyst. We find that the more hydrophilic Pt/Al2O3 interface leads to smaller (more positive) free energies of solvation due to an increased entropy penalty resulting from the additional work necessary to disrupt the interfacial water structure and accommodate the interfacial species. The results will be of interest in other fields, including adsorption and proteins. Graphical abstract Highlights • Interfacial properties play an important role on adsorbate solvation thermodynamics• Pt terrace and Pt/Al2O3 perimeter sites exhibit entropy to energy compensation• Cavity formation also influences solvation entropy on Pt/Al2O3 perimeter sites Theoretical chemistry; Computational molecular modeling.

SUBMITTER: Garcia Carcamo R 

PROVIDER: S-EPMC9900392 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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