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CO adsorption on close-packed transition and noble metal surfaces: trends from ab initio calculations

机译:密堆积过渡和贵金属表面上的CO吸附:从头算计算的趋势

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摘要

We have studied the trends in CO adsorption on close-packed metal surfaces: Co, Ni, Cu from the 3d row, Ru, Rh, Pd, Ag from the 4d row and Ir, Pt, Au from the 5d row using density functional theory. In particular, we were concerned with the trends in adsorption energy, geometry, vibrational properties and other parameters derived from the electronic structure of the substrate. The influence of specific changes in our set-up, such as choice of the exchange correlation functional, the choice of pseudopotential, size of the basis set and substrate relaxation, has been carefully evaluated. We found that, while the geometrical and vibrational properties of the adsorbate-substrate complex are calculated with high accuracy, the adsorption energies calculated with the gradient-corrected Perdew-Wang exchange-correlation energies are overestimated. In addition, the calculations tend to favour adsorption sites with higher coordination, resulting in the prediction of the wrong adsorption sites for the Rh, Pt and Cu surfaces (hollow instead of top). The revised Perdew-Burke-Erzernhof functional (RPBE) leads to lower (i.e. more realistic) adsorption energies for transition metals, but to the wrong results for noble metals-for Ag and Au, endothermic adsorption is predicted. The site preference remains the same. We discuss trends in relation to the electronic structure of the substrate across the periodic table, summarizing the state-of-the-art of CO adsorption on close-packed metal surfaces. [References: 98]
机译:我们使用密度泛函理论研究了紧密堆积的金属表面上的CO吸附趋势:3d行的Co,Ni,Cu,4d行的Ru,Rh,Pd,Ag和5d行的Ir,Pt,Au 。特别是,我们关注的是吸附能,几何形状,振动特性和其他参数的趋势,这些趋势是从基材的电子结构得出的。我们已经仔细评估了设置中特定变化的影响,例如交换相关功能的选择,伪电位的选择,基集的大小和底物弛豫。我们发现,虽然高精度地计算了吸附物-底物复合物的几何和振动性质,但高估了用梯度校正的Perdew-Wang交换-相关能计算的吸附能。另外,计算倾向于倾向于具有较高配位的吸附位点,从而导致对Rh,Pt和Cu表面(空心而不是顶部)的错误吸附位点的预测。修改后的Perdew-Burke-Erzernhof官能团(RPBE)导致过渡金属的吸附能更低(即更现实),但是对于贵金属(对于Ag和Au)来说,结果是错误的,预计会发生吸热吸附。网站首选项保持不变。我们讨论了元素周期表中与基材的电子结构有关的趋势,总结了紧密堆积的金属表面上CO吸附的最新技术。 [参考:98]

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