Kiejna Adam, Nieminen R M
Institute of Experimental Physics, University of Wrocław, Plac M. Borna 9, PL-50-204 Wrocław, Poland.
J Chem Phys. 2005 Jan 22;122(4):44712. doi: 10.1063/1.1836755.
Atomic oxygen adsorption on the Mo(112) surface has been investigated by means of first-principles total energy calculations. Among the variety of possible adsorption sites it was found that the bridge sites between two Mo atoms of the topmost row are favored for O adsorption at low and medium coverages. At about one monolayer coverage oxygen atoms prefer to adsorb in a quasithreefold hollow sites coordinated by two first-layer Mo atoms and one second layer atom. The stability of a structural model for an oxygen-induced p(2 x 3) reconstruction of the missing-row type is examined.
通过第一性原理总能量计算研究了原子氧在Mo(112)表面的吸附。在各种可能的吸附位点中,发现最顶层一排两个Mo原子之间的桥位在低覆盖度和中等覆盖度下有利于O吸附。在约一个单层覆盖度时,氧原子更倾向于吸附在由两个第一层Mo原子和一个第二层原子配位的准三重中空位点。研究了氧诱导的缺失行型p(2×3)重构结构模型的稳定性。