Yang Yu, Zhou Gang, Wu Jian, Duan Wenhui, Xue Qi-Kun, Gu Bing-Lin, Jiang Peng, Ma Xucun, Zhang S B
Center for Advanced Study and Department of Physics, Tsinghua University, Beijing 100084, People's Republic of China.
J Chem Phys. 2008 Apr 28;128(16):164705. doi: 10.1063/1.2905210.
Using first-principles calculations based on density-functional theory, we systematically study the adsorption of O(2) molecules on ultrathin Pb(111) films ranging from 3 to 11 monolayers (MLs). It is found that no matter how thick the film is, the O(2) molecule prefers to adsorb at the threefold hcp hollow site where it lies parallel to the surface. The adsorption mechanism is discussed from the hybridization of p orbitals of O(2) and Pb. The adsorption energy of O(2) on the Pb(111) film, about several hundred meV, shows a 2 ML oscillation with the thickness. This study well confirms the modulation of the surface reactivity of Pb films induced by the quantum well states, which is compatible with the previous experimental observation.
基于密度泛函理论的第一性原理计算,我们系统地研究了O₂分子在3至11个单层(MLs)的超薄Pb(111)薄膜上的吸附情况。研究发现,无论薄膜多厚,O₂分子都倾向于吸附在与表面平行的三重hcp空心位点上。从O₂和Pb的p轨道杂化角度讨论了吸附机理。O₂在Pb(111)薄膜上的吸附能约为几百meV,随薄膜厚度呈现2 ML的振荡。该研究很好地证实了量子阱态对Pb薄膜表面反应性的调制,这与之前的实验观察结果相符。