Title of article
Atomic and molecular adsorption on Pd(111)
Author/Authors
Herron، نويسنده , , Jeffrey A. and Tonelli، نويسنده , , Scott and Mavrikakis، نويسنده , , Manos، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2012
Pages
10
From page
1670
To page
1679
Abstract
The adsorption properties of a variety of atomic species (H, O, N, S, and C), molecular species (N2, HCN, CO, NO, and NH3) and molecular fragments (CN, NH2, NH, CH3, CH2, CH, HNO, NOH, and OH) are calculated on the (111) facet of palladium using periodic self-consistent density functional theory (DFT–GGA) calculations at ¼ ML coverage. For each species, we determine the optimal binding geometry and corresponding binding energy. The vibrational frequencies of these adsorbed species are calculated and are found to be in good agreement with experimental values that have been reported in literature. From the binding energies, we calculate potential energy surfaces for the decomposition of NO, CO, N2, NH3, and CH4 on Pd(111), showing that only the decomposition of NO is thermochemically preferred to its molecular desorption.
Keywords
Density functional theory , PALLADIUM , Catalysis , Adsorption , Binding energies , Vibrational frequencies , diffusion
Journal title
Surface Science
Serial Year
2012
Journal title
Surface Science
Record number
1686987
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