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钾在铅(111)表面吸附的第一性原理研究。

A first-principles study of K adsorption on Pb(111).

作者信息

Lai Wenzhen, Huang Wuying, Xie Daiqian

机构信息

Institute of Theoretical and Computational Chemistry, Key Laboratory of Mesoscopic Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.

出版信息

Phys Chem Chem Phys. 2008 Mar 28;10(12):1669-74. doi: 10.1039/b718477h. Epub 2008 Feb 8.

Abstract

Ab initio total-energy density functional theory calculations with supercell models have been employed to investigate the R30 degrees and (2 x 2) structures of K on the Pb(111) surface. Four "on-surface" sites and a substitutional site were considered. The calculations showed that the substitutional site is more stable than all the on-surface sites, due to its low vacancy formation energy. The calculated R30 degrees geometry agrees well with the LEED results. The density-of-states analysis indicates that the K atom loses part of its loosely bound valence s electron. From the electron density distributions, it was found that the lowering of the work function after the substitutional adsorption can be attributed to the dipole moment, associated with the positively polarized adsorbate atom that is characterized by charge depletion from the K vacuum sides and charge accumulation in the region between K and Pb atoms. Our results indicate that the bonding of K with the Pb(111) surface has a mixed ionic and metallic bond character.

摘要

采用超胞模型的从头算总能量密度泛函理论计算方法,研究了钾在铅(111)表面的30°旋转和(2×2)结构。考虑了四个“表面上”的位置和一个替代位置。计算结果表明,替代位置比所有表面上的位置更稳定,这是由于其空位形成能较低。计算得到的30°几何结构与低能电子衍射结果吻合良好。态密度分析表明,钾原子失去了部分松散束缚的价s电子。从电子密度分布发现,替代吸附后功函数的降低可归因于偶极矩,该偶极矩与正极化的吸附原子相关,其特征是钾原子真空侧电荷耗尽以及钾原子与铅原子之间区域电荷积累。我们的结果表明,钾与铅(111)表面的键合具有离子键和金属键的混合特征。

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