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Direct Observation of the Surface Segregation of Cu in Pd by Time-Resolved Positron-Annihilation-Induced Auger Electron Spectroscopy

机译:用时间分辨正电子Aug灭诱导俄歇电子能谱直接观察钯中铜的表面偏析

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Density functional theory calculations predict the surface segregation of Cu in the second atomic layer of Pd which has not been unambiguously confirmed by experiment so far. We report measurements on Pd surfaces covered with three and six monolayers of Cu using element selective positron-annihilation-induced Auger electron spectroscopy (PAES) which is sensitive to the topmost atomic layer. Moreover, time-resolved PAES, which was applied for the first time, enables the investigation of the dynamics of surface atoms and hence the observation of the segregation process. The time constant for segregation was experimentally determined to τ = 1.38(0.21) h, and the final segregated configuration was found to be consistent with calculations. Time-dependent PAES is demonstrated to be a novel element selective technique applicable for the investigation of, e.g., heterogeneous catalysis, corrosion, or surface alloying.
机译:密度泛函理论计算可预测到目前为止,在钯的第二原子层中铜的表面偏析尚未得到实验的明确证实。我们报告了使用对最顶层原子层敏感的元素选择性正电子-灭感应俄歇电子能谱(PAES)对覆盖有三层和六层单层Cu的Pd表面进行的测量。此外,首次应用的时间分辨PAES使得能够研究表面原子的动力学,从而观察偏析过程。实验确定了分离的时间常数为τ= 1.38(0.21)h,发现最终的分离构型与计算结果一致。时变的PAES被证明是一种新颖的元素选择技术,适用于研究例如非均相催化,腐蚀或表面合金化。

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