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首页> 外文期刊>The Journal of Chemical Physics >Intrinsic stability and hydrogen affinity of pure and bimetallic nanowires
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Intrinsic stability and hydrogen affinity of pure and bimetallic nanowires

机译:纯金属和双金属纳米线的本征稳定性和氢亲合力

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摘要

A density functional theory study of the intrinsic stability of pure and bimetallic wires is presented. Several bimetallic combinations forming one-atom thick wires are studied. An explanation for the experimental instability of Cu wires in contrast to the stability of Au and Ag wires is given, which relies on the higher surface energy of the former. All the possible intercalations between Ni, Pd, Pt, Cu, Ag, and Au are studied. The bimetallic wires AuCu and AuAg were found to be the most stable ones. The reactivity of the latter two systems is also examined using hydrogen adsorption as a microscopic probe. It was found that at the inter-metal interface, up to second neighbors, Cu and Ag become more reactive and Au becomes more inert than the corresponding pure wires. These results are explained within the d-band model.
机译:提出了纯金属和双金属丝固有稳定性的密度泛函理论研究。研究了几种形成单原子粗线的双金属组合。给出了与Au和Ag线相比,Cu线的实验不稳定性的解释,这取决于前者的较高表面能。研究了Ni,Pd,Pt,Cu,Ag和Au之间所有可能的插入。发现双金属线AuCu和AuAg是最稳定的。后两个系统的反应性也使用氢吸附作为显微镜探针进行了检查。已经发现,在金属间界面处,直到第二邻点为止,Cu和Ag的反应性都比相应的纯金属线高,Au的惰性更高。这些结果在d波段模型中进行了解释。

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