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Atomic-level studies of cluster diffusion on metal surfaces

机译:金属表面集群扩散的原子水平研究

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Direct observations of atomic motion with the field ion microscope (FIM) are providing detailed information on the mechanisms and energetics by which small clusters migrate across metal surfaces. An important result to emerge from these studies is that the activation energies of surface diffusion for small clusters on fcc(100) this correlation leads to an oscillatory behavior in the cluster mobility as a function of cluster size. For Pt on Rh(100) the activation energy is constant as clusters increase in size from three to five atoms and is also correlated with shape. The atomic-level mechanism involved in cluster diffusion on fcc(100) surfaces is inferred from a comparison of the measured activation energies to previous theoretical calculations.
机译:用现场离子显微镜(FIM)的原子运动的直接观察提供有关跨金属表面迁移的机制和能量的详细信息。 从这些研究中出现的重要结果是FCC(100)上的小簇的表面扩散的激活能量这种相关性导致群集移动中的振荡行为作为簇大小的函数。 对于RH(100)上的PT(100),活化能量是恒定的,因为簇的尺寸从三到五个原子增加并且也与形状相关。 从测量的激活能量与先前的理论计算的比较推断出COMC(100)表面上的集群扩散中所涉及的原子级机制。

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