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Reconstruction and subsurface lattice distortions in the (2 × 1)O-Ni(110) structure: A LEED analysis

机译:(2×1)O-Ni(110)结构中的重建和次表面晶格畸变:LEED分析

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摘要

LEED analysis of the reconstructed (2 × 1)O-Ni(110) system clearly favors the “missing row” structure over the “saw-tooth” and “buckled row” models. By using a novel computational procedure 8 structural parameters could be refined simultaneously, leading to excellent R-factors (RZJ = 0.09, RP = 0.18). The adsorbed O atoms are located 0.2 Å above the long bridge sites in [001] direction, presumably with a slight displacement ( 0.1 Å) in [1 0] direction to an asymmetric adsorption site. The nearest-neighbor Ni---O bond lengths (1.77 Å) are rather short. The separation between the topmost two Ni layers is expanded to 1.30 Å (bulk value 1.25 Å), while that between the second and third layer is slightly contracted to 1.23 Å. The third layer is, in addition, slightly buckled (±0.05 Å). The results are discussed on the basis of our present general knowledge about the structure of adsorbate covered metallic surfaces.
机译:对重建的(2×1)O-Ni(110)系统的LEED分析显然更倾向于“缺失排”结构,而不是“锯齿”和“扣排”模型。通过使用新颖的计算程序,可以同时细化8个结构参数,从而获得出色的R因子(RZJ = 0.09,RP = 0.18)。被吸附的O原子在[001]方向上位于长桥位点上方0.2Å,大概在[1 0]方向上向不对称吸附位点有微小位移(0.1Å)。最近邻的Ni-O键长度(1.77Å)相当短。最上面两个镍层之间的间距扩大到1.30Å(批量值1.25Å),而第二层和第三层之间的间距稍微缩小到1.23Å。此外,第三层稍微弯曲(±0.05埃)。基于我们目前对被吸附物覆盖的金属表面的结构的常识,对结果进行了讨论。

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