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Diffusion and vibration of CO molecules adsorbed on a Cu(100) surface: A periodic density functional theory study

机译:吸附在Cu(100)表面上的CO分子的扩散和振动:周期性密度泛函理论研究

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摘要

The potential energy surface (PES) describing the diffusion and vibration of CO molecules adsorbed on a Cu(100) surface has been calculated using density functional theory within two different generalized gradient approximations (GGAs), employing a slab representation of the surface. One goal of the study was to investigate the origin of the discrepancy between a recently published PES [J. Chem. Phys. 114, 1053 (2001)] and inferences that had been made from various experiments. A further aim was to create a PES that could provide a better basis for modeling and understanding of the diffusive and vibrational motion in the CO/Cu(100) system. We found that the calculated PES has a global minimum on-top of the substrate atoms in line with the experimentally determined adsorption site. Diffusion is preferred across the bridge site, a saddle point, with a diffusion barrier of 95 (+-) 30 meV and 125 (+-) 30 meV for the two GGAs. Vibrational frequencies deduced from the PES agree with experimental results to within 10 meV.
机译:描述表面势能表面(PES)描述了吸附在Cu(100)表面上的CO分子的扩散和振动,这是使用密度泛函理论在两个不同的广义梯度近似(GGA)中使用表面的平板表示来计算的。该研究的目的之一是调查最近发表的PES之间差异的根源[J.化学物理,第114卷,第1053页(2001)]和从各种实验中得出的推论。另一个目标是创建一个PES,该PES可以为建模和理解CO / Cu(100)系统中的扩散和振动运动提供更好的基础。我们发现,计算得出的PES与实验确定的吸附位点一致,在底物原子的顶部具有全局最小值。最好跨桥位置(鞍点)进行扩散,两个GGA的扩散势垒分别为95(±)30 meV和125(±)30 meV。从PES推导的振动频率与实验结果一致,在10 meV以内。

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