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The effect of adsorbed sulfur on surface segregation in a polycrystalline Pd_(70)Cu_(30) alloy

机译:吸附硫对多晶Pd_(70)Cu_(30)合金表面偏析的影响

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Surface segregation in alloys can be influenced by the presence of adsorbed species. In this work, the effect of adsorbed sulfur on surface segregation in a Pd_(70)Cu_(30) alloy was studied for sulfur coverages from zero through saturation and for temperatures from 400 to 1000 K. X-ray photoemission spectroscopy (XPS) was used to determine the alloy composition in the near-surface region (~7 atomic layers) and low energy ion scattering spectroscopy (LEISS) was used to probe the composition of the topmost atomic layer of the alloy. Surface segregation was observed to depend on both the presence of adsorbed sulfur and heat-treatment history. The near-surface region of the clean alloy was enriched in Pd relative to the bulk, but the topmost atomic layer was enriched in Cu. Adsorbed sulfur caused a reversal of the Cu enrichment of the topmost surface, resulting in a top layer that contained only Pd and S atoms. Segregation reversal may be driven by the formation of thermodynamically favored Pd-S bonds at the terminating surface of the alloy.
机译:合金中的表面偏析会受到吸附物质的存在的影响。在这项工作中,研究了吸附硫对Pd_(70)Cu_(30)合金中表面偏析的影响,研究了从零到饱和的硫覆盖范围以及从400到1000 K的温度。X射线光电子能谱(XPS)为用于确定合金在近表面区域(约7个原子层)的组成,并使用低能离子散射光谱法(LEISS)探测合金最顶层的原子层的组成。观察到表面偏析取决于所吸附的硫的存在和热处理历史。相对于主体,清洁合金的近表面区域富含Pd,但最顶层的原子层富含Cu。吸附的硫导致最上层表面的铜富集逆转,从而导致顶层仅包含Pd和S原子。通过在合金的终止表面上形成热力学上有利的Pd-S键,可以促使偏析逆转。

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