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首页> 外文期刊>Physica, B. Condensed Matter >Segregation of alloying atoms on the Fe(l 0 0) surface and their effects on oxygen adsorption
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Segregation of alloying atoms on the Fe(l 0 0) surface and their effects on oxygen adsorption

机译:Fe(l 0 0)表面上合金原子的偏析及其对氧吸附的影响

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摘要

The segregation of 3d transition metals and their effects on oxygen adsorption on the Fe(l 0 0) surface are systematically studied using the first-principles calculations. On the one hand, Sc, Ti, Mn, Ni, Cu, and Zn have a tendency to segregate towards the surface, while V, Cr, and Co prefer to remain in the interior of Fe bulk. Furthermore, the segregation energies varies monotonically from layers 1-5 for all 3d transition metals except Ti, Cr, Mn, whose subsurface layer provides a large barrier for surface segregation. On the other hand, attractive/repulsive interaction has been observed between oxygen and alloying atom with lower/higher atomic number than that of Fe. Based on the above results, the oxidation should be expected to occur preferentially at the Sc, Ti, and Mn segregation regions on the Fe (100) surface.
机译:使用第一性原理计算系统地研究了3d过渡金属的偏析及其对Fe(l 0 0)表面的氧吸附的影响。一方面,Sc,Ti,Mn,Ni,Cu和Zn倾向于向表面偏析,而V,Cr和Co则倾向于保留在Fe块体内部。此外,对于除Ti,Cr,Mn以外的所有3d过渡金属而言,偏析能从1-5层单调变化,Ti,Cr,Mn的次表面层为表面偏析提供了较大的势垒。另一方面,已经观察到氧与原子序数比Fe低/高的合金原子之间的吸引/排斥相互作用。基于以上结果,应该预期氧化会优先发生在Fe(100)表面的Sc,Ti和Mn偏析区域。

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