## Abstract The adsorption and diffusion of hydrogen atom on open rough Pd(311) and Ni(311) stepped surface were investigated in detail using 5‐parameter Morse Potential (5‐MP for short) method. The results on theoretical studies indicate that only threefold adsorption states exist at low coverage,
Oxygen Atom Adsorption and Diffusion on Pd Low-index Surfaces and (311) Stepped Surface
✍ Scribed by Ze-Xin Wang; Xiang-Feng Jia; Feng-Hui Tian; Shou-Gang Chen
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 663 KB
- Volume
- 22
- Category
- Article
- ISSN
- 0256-7660
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✦ Synopsis
Abstract
The 5‐parameter Morse potential (5‐MP for short) of the interaction system between an oxygen atom and palladium surface clusters was constructed. The adsorption and diffusion of an oxygen atom on low index surfaces Pd (100). Pd (111). Pd (110) and Pd (311) stepped surface were investigated in detail with 5‐MP. It is found that fcc and hcp sites on the (111) surface and (111) microfacets are equivalent. The calculation results show that O atom adsorbs in the three‐fold hollow site, and the long‐bridge site is a stable site both in regular Pd (110) surface and in the (1×2) missing‐row reconstruction structure. Moreover, in the study of O‐Pd (311) surface system, We conclude that there are two stable adsorption states (four‐fold site: H~4~, three‐fold site: H__~n~) on O‐Pd (311) surface and the three‐fold site (H~f~__) is the metastable adsorption. At low coverage oxygen atom favors the four‐fold hollow site (H~4~).
📜 SIMILAR VOLUMES
## Abstract The adsorption and diffusion of N atoms on the three low‐index Cu planes were studied using 5‐parameter Morse potential (5‐MP) method, and the best theory‐experiment agreement was obtained. N atom of Cu(100) surface sit on the fourfold hollow site with the vertical height of 0.018 nm cl