JOURNAL ARTICLE

Oxygen island formation on Pt(111) studied by dynamic Monte Carlo simulation

Masanari NagasakaHiroshi KondohIkuyo NakaiToshiaki Ohta

Year: 2005 Journal:   The Journal of Chemical Physics Vol: 122 (4)Pages: 44715-44715   Publisher: American Institute of Physics

Abstract

The formation of oxygen islands on the Pt(111) surface has been studied as a function of temperature by low energy electron diffraction (LEED) experiments and dynamic Monte Carlo (DMC) simulations. By raising the temperature, the (2×2) LEED spot intensity increases gradually and decays after a peak at around 255 K (Tp) with full width of half maximum of 160 K. This behavior is interpreted by DMC simulations with the kinematical LEED analysis. In the DMC simulation, an oxygen atom hops to the neighboring site via the activation barrier of the saddle point. The potential energies at initial, saddle, and final points are changed at each hopping event depending on the surrounding oxygen atoms. By comparing the observed Tp with the simulated one, the interaction energy E of oxygen atoms on Pt(111) was determined to be 25±3 meV at 2a0. The DMC simulations visualize how the oxygen islands are formed and collapse on Pt(111) with increase of the temperature and well reproduce the surface configurations observed by scanning tunneling microscopy.

Keywords:
Monte Carlo method Oxygen Statistical physics Physics Statistics Mathematics

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Citation History

Topics

Electron and X-Ray Spectroscopy Techniques
Physical Sciences →  Materials Science →  Surfaces, Coatings and Films
Advanced Chemical Physics Studies
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Ion-surface interactions and analysis
Physical Sciences →  Engineering →  Computational Mechanics

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