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Influence of steps on the interaction between adsorbed hydrogen atoms and a nickel surface

机译:台阶对吸附的氢原子与镍表面相互作用的影响

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We have studied the effect of an extended array of defects on the two-dimensional phase behavior of adsorbed hydrogen on a Ni surface using helium atom scattering. Specifically, the interaction of hydrogen with the stepped Ni(977) surface was examined and compared with similar interactions with the flat Ni(111) surface. The phase behavior of hydrogen on Ni(977) is qualitatively the same as that of hydrogen on Ni(111); however, the temperature at which the order-disorder transition occurs is elevated. On the stepped surface, the ordered (2 * 2)-2H phase exists at a temperature 40 K higher than on the flat surface. This reversible phase transition is second order and is best fit with T_c = 310 K and #beta# = 0.12, indicative of two-dimensional Ising behavior. Stabilization of the ordered phase is attributed to pinning from the step edges. The cross section for diffuse elastic He scattering by adsorbed hydrogen and the temperature-dependent domain size of ordered hydrogen along the step edges are also discussed.
机译:我们已经研究了缺陷扩展阵列对使用氦原子散射在Ni表面吸附的氢的二维相行为的影响。具体而言,检查了氢与台阶状Ni(977)表面的相互作用,并将其与平坦Ni(111)表面的相似相互作用进行了比较。氢在Ni(977)上的相态定性与氢在Ni(111)上的相态相同。然而,发生有序-无序转变的温度升高。在台阶表面上,有序(2 * 2)-2H相的存在温度比平坦表面高40K。此可逆相变是二阶的,最适合T_c = 310 K和#beta#= 0.12,这表明二维伊辛行为。有序相位的稳定归因于台阶边缘的固定。还讨论了被吸附的氢扩散弹性He散射的横截面以及沿着台阶边缘的有序氢的温度相关畴尺寸。

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