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Density functional theory and ab initio molecular dynamics study of NO adsorption on Pd(111) and Pt(111) surfaces

机译:密度泛函理论和从头算分子动力学研究NO在Pd(111)和Pt(111)表面的吸附

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The origin of the unique geometry for nitric oxide (NO) adsorption on Pd(111) and Pt(111) surfaces as well as the effect of temperature were studied by density functional theory calculations and ab initio molecular dynamics at finite temperature. We found that at low coverage, the adsorption geometry is determined by electronic interactions, depending sensitively on the adsorption sites and coverages, and the effect of temperature on geometries is significant. At coverage of 0.25 monolayer (ML), adsorbed NO at hollow sites prefer an upright configuration, while NO adsorbed at top sites prefer a tilting configuration. With increase in the coverage up to 0.50 ML, the enhanced steric repulsion lead to the tilting of hollow NO. We found that the tilting was enhanced by the thermal effects. At coverage of 0.75 ML with p(2 × 2)-3NO(fcc+hcp+top) structure, we found that there was no preferential orientation for tilted top NO. The interplay of the orbital hybridization, thermal effects, steric repulsion, and their effects on the adsorption geometries were highlighted at the end.
机译:通过密度泛函理论计算和在有限温度下从头算分子动力学研究了一氧化氮(NO)吸附在Pd(111)和Pt(111)表面上的独特几何形状的起源以及温度的影响。我们发现,在低覆盖率下,吸附几何形状是由电子相互作用决定的,敏感地取决于吸附部位和覆盖物,并且温度对几何形状的影响非常明显。在0.25单分子层(ML)的覆盖率下,中空位置吸附的NO首选竖立配置,而顶部位置吸附的NO首选倾斜配置。随着覆盖范围的增加,最高可达0.50 ML,增强的空间排斥力会导致空心NO倾斜。我们发现热效应增强了倾斜。在p(2×2)-3NO(fcc + hcp + top)结构覆盖0.75 ML时,我们发现倾斜的顶部NO没有优先的取向。最后,重点介绍了轨道杂交,热效应,空间排斥以及它们对吸附几何形状的相互作用。

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