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首页> 外文期刊>The Journal of Chemical Physics >The role of substrate electrons in the wetting of a metal surface
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The role of substrate electrons in the wetting of a metal surface

机译:衬底电子在金属表面润湿中的作用

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We address how the electronic and geometric structures of metal surfaces determine water-metal bonding by affecting the balance between Pauli repulsion and electrostatic attraction. We show how the rigid d-electrons and the softer s-electrons utilize different mechanisms for the redistribution of charge that enables surface wetting. On open d-shell Pt(111), the ligand field of water alters the distribution of metal d-electrons to reduce the repulsion. The closed-shell Cu d10 configuration of isostructural Cu(111), however, does not afford this mechanism, resulting in a hydrophobic surface and three-dimensional ice cluster formation. On the geometrically corrugated Cu(110) surface, however, charge depletion involving the mobile sp-electrons at atomic rows reduces the exchange repulsion sufficiently such that formation of a two-dimensional wetting layer is still favored in spite of the d10 electronic configuration.
机译:我们解决了金属表面的电子和几何结构如何通过影响Pauli排斥力和静电引力之间的平衡来确定水金属键合的问题。我们展示了刚性d电子和较软s电子如何利用不同的机制进行电荷重新分布,从而实现表面润湿。在开放的d壳Pt(111)上,水的配体场会改变金属d电子的分布,从而减少排斥。但是,同构结构的Cu(111)的闭壳Cu d10构型不提供这种机理,导致疏水表面和三维冰团的形成。但是,在几何波纹状的Cu(110)表面上,原子排处涉及移动sp电子的电荷耗尽会充分减少交换排斥力,因此尽管采用d10电子结构,仍然更倾向于形成二维润湿层。

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