首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Origin of Surprising Attractive Interactions between Electronegative Oxygen Adatoms on Aluminum Surfaces
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Origin of Surprising Attractive Interactions between Electronegative Oxygen Adatoms on Aluminum Surfaces

机译:铝表面负氧吸附原子之间令人惊讶的有吸引力相互作用的起源

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摘要

When electronegative atoms adsorb on a more electropositive metal surface, charge transfer occurs and adatoms become negatively charged, typically resulting in repulsive lateral interactions. However, in the case of O on Al surfaces, the opposite occurs and the lateral interactions between adatoms are attractive. We demonstrate that the surprising attractive interactions are a consequence of a simple electrostatic stabilization that stems from an interplay between Coulombic interactions and geometric effects; that is, there exists a critical adatom height above the surface below which the lateral interactions are attractive. We argue that this picture is generally applicable for electronegative adatoms on metal surfaces provided that (i) the adsorption bonding is sufficiently ionic and (ii) the adatoms are sufficiently small to come close enough to the surface.
机译:当带负电的原子吸附在更带正电的金属表面上时,会发生电荷转移,并使原子原子带负电,通常会导致排斥性的侧向相互作用。但是,在铝表面为O的情况下,相反的情况发生,并且吸附原子之间的侧向相互作用很有吸引力。我们证明了令人惊讶的有吸引力的相互作用是简单的静电稳定作用的结果,该静电稳定作用是由于库仑相互作用和几何效应之间的相互作用而产生的。也就是说,在表面上方存在一个临界吸附原子高度,在该高度以下,横向相互作用很有吸引力。我们认为,只要(i)吸附键具有足够的离子性,并且(ii)吸附原子足够小以使其足够接近表面,该图片通常适用于金属表面上的负电吸附原子。

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