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首页> 外文期刊>Surface Science >Dioxygen molecule adsorption and oxygen atom diffusion on clean and defective aluminum(111) surface using first principles calculations
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Dioxygen molecule adsorption and oxygen atom diffusion on clean and defective aluminum(111) surface using first principles calculations

机译:使用第一性原理计算在干净和有缺陷的铝(111)表面上的双氧分子吸附和氧原子扩散

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摘要

First principles calculations are conducted to investigate kinetic behavior of oxygen species at the surface of clean and defective Al(111) substrate. Oxygen island, aluminum vacancy, aluminum sub-vacancy, aluminum ad-atom and aluminum terraces defects are addressed. Adsorption of oxygen molecule is first performed on all these systems resulting in dissociated oxygen atoms in main cases. The obtained adsorbed configurations are then picked to study the behavior of atomic oxygen specie and get a detailed understanding on the effect of the local environment on the ability of the oxygen atom to diffuse on the surface. We pointed out that local environment impacts energetics of oxygen atom diffusion. Close packed oxygen island, sub-vacancy and ad-atoms favor oxygen atom stability and decrease mobility of oxygen atom on the surface, to be seen as surface area for further nucleation of oxygen island.
机译:进行第一性原理计算以研究清洁和有缺陷的Al(111)衬底表面上的氧物种的动力学行为。解决了氧岛,铝空位,铝亚空位,铝原子原子和铝阶台缺陷。首先在所有这些系统上进行氧分子的吸附,从而在主要情况下导致离解的氧原子。然后挑选获得的吸附构型以研究原子氧物种的行为,并详细了解局部环境对氧原子在表面扩散的能力的影响。我们指出,局部环境影响氧原子扩散的能量。密排的氧岛,亚空位和原子原子有利于氧原子的稳定性并降低表面上氧原子的迁移率,被视为氧岛进一步成核的表面积。

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