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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Theoretical study of the structures and chemical ordering of CoPd nanoalloys supported on MgO(001)
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Theoretical study of the structures and chemical ordering of CoPd nanoalloys supported on MgO(001)

机译:MgO(001)负载CoPd纳米合金的结构与化学有序性的理论研究

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摘要

Metal nanoalloys on oxide surface are a widely studied topic in surface science and technology. In this study, the structures of CoPd nanoalloys adsorbed on MgO(001) have been searched by basin-hopping global optimization method within an atomistic model. Two different sizes (34 and 38 atom) have been considered for all compositions of CoPd/MgO(001) nanoalloys. Co and Pd atoms, for all the compositions, have cube-on-cube (001) epitaxy with substrate at interface. For both sizes, we have found that Pd rich composition nanoalloys have three layers, Co rich composition nanoalloys have four layers in morphology. Excess energy and second difference in energy analyzes have been performed to investigate the relative stability of nanoalloys with respect to their size and composition.
机译:氧化物表面的金属纳米合金是表面科学和技术领域中广泛研究的话题。在这项研究中,通过在原子模型内的盆地跳跃全局最优化方法来搜索CoPd纳米合金吸附在MgO(001)上的结构。对于CoPd / MgO(001)纳米合金的所有成分,已经考虑了两种不同的大小(34和38原子)。对于所有组成,Co和Pd原子具有立方在立方上的外延(001)外延,并且在界面处具有衬底。对于这两种尺寸,我们发现富Pd组成的纳米合金具有三层,富Co组成的纳米合金在形态上具有四层。已经进行了能量分析中的过多能量和第二次差异,以研究纳米合金相对于其尺寸和组成的相对稳定性。

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