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首页> 外文期刊>Journal of Low Temperature Physics >Quantum Size Effects in the Growth, Coarsening, and Properties of Ultra-thin Metal Films and Related Nanostructures
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Quantum Size Effects in the Growth, Coarsening, and Properties of Ultra-thin Metal Films and Related Nanostructures

机译:量子尺寸对超薄金属膜及相关纳米结构的生长,粗化和性能的影响

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摘要

This review addresses the quantum mechanical nature of the formation and stability of ultrathin metal films. The competition between quantum confinement, charge spilling effects, and Friedel oscillations determines whether an atomically smooth metal film will be marginally, critically, or magically stable or totally unstable against roughening. Pb(111) films represent a special case, not only because of strong quantum oscillations in the stability of two-dimensional thin films but also because of the exceptionally fast coarsening of Pb nanoclusters. The latter appears to be due to the combined effects of size quantization and the existence of a unique mass exchange medium in the form of an unusually dense and highly dynamic wetting layer. The consequences of size quantization on the physical and chemical properties of the films are profound, some of which will be highlighted in this review. Keywords Metal films - Metal islands - Quantum size effects - Electronic growth - Stability - Coarsening - Superconductivity - Work function - Reactivity - Catalysis
机译:这项审查解决了超薄金属膜的形成和稳定性的量子力学性质。量子约束,电荷​​溢出效应和Friedel振荡之间的竞争决定了原子光滑的金属膜在粗糙化方面是边缘稳定,临界稳定还是魔术稳定还是完全不稳定。 Pb(111)薄膜代表了一种特殊情况,这不仅是由于二维薄膜稳定性中的强量子振荡,而且还因为Pb纳米团簇的快速变粗。后者似乎是由于尺寸量化和独特的质量交换介质以异常密集和高度动态的润湿层形式共同作用的结果。尺寸量化对薄膜的物理和化学性质的影响是深远的,其中一些将在本综述中强调。关键词金属膜-金属岛-量子尺寸效应-电子生长-稳定性-粗化-超导电性-功函数-反应性-催化

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