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First-principles study of surface and subsurface O structures at Al(111) - art. no. 085405

机译:Al(111)表面和亚表面O结构的第一性原理研究-艺术。没有。 085405

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The structural and electronic properties of oxygen atoms adsorbed in on-surface and subsurface sites at the Al(111) surface are investigated from first principles using the density functional theory within the generalized gradient approximation and a supercell approach for a range of oxygen coverages 0 less than or equal to Theta less than or equal to1, in some cases in two layers. For on-surface adsorption the binding energy increases with Theta, predicting formation of islands in agreement with earlier calculations and experiments. The most stable subsurface adsorption site is found for the (1 x 1) structure, i.e., Theta = 1, in tetrahedral sites 1.92 Angstrom below the topmost, 25% relaxed, Al atomic plane and 0.4 eV/atom higher in energy than the most preferred energy state in the on-surface fee hollow site. The adsorption of O has a significant effect on surface buckling relaxation. Oxygen atoms adsorbed in subsurface octahedral sites induce very large (60%) outward relaxation of the topmost layer spacing, which points to the weakening of metal-metal bonds between the two outer Al layers. For the simultaneous subsurface and on-surface adsorption at Theta = 1. the binding energy in the subsurface site is 0.2 eV/atom lower than the binding energy in over-surface fee hollow sites. The sizable work-function changes for different structures are presented and discussed. [References: 37]
机译:从第一性原理出发,使用密度泛函理论在广义梯度近似和超级单元方法中研究氧在Al(111)表面和地下位置处吸附的氧原子的结构和电子性质,其范围为0≤等于或小于Theta小于或等于1,在某些情况下为两层。对于表面吸附,结合能随Theta的增加而增加,与先前的计算和实验一致地预测了岛的形成。在(1 x 1)结构中发现了最稳定的次表面吸附位,即Theta = 1,位于最顶部以下1.92埃,25%弛豫的Al原子平面和比最大能量高0.4 eV /原子的四面体位置表层空洞中的首选能量状态。 O的吸附对表面屈曲松弛具有显着影响。吸附在地下八面体位置的氧原子引起最顶层间隔很大(60%)的向外弛豫,这表明两个外部Al层之间的金属-金属键减弱。对于同时在Theta = 1下进行的地下和表面吸附,地下位点的结合能比表面电荷空心位点的结合能低0.2 eV /原子。呈现并讨论了不同结构的大量工作功能更改。 [参考:37]

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