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Adsorption of NO on the Rh-13, Pd-13, Ir-13, and Pt-13 Clusters: A Density Functional Theory Investigation

机译:NO在Rh-13,Pd-13,Ir-13和Pt-13团簇上的吸附:密度泛函理论研究

摘要

The adsorption of NO on transition-metal (TM) surfaces has been widely studied by experimental and theoretical techniques; however, our atomistic understanding of the interaction of nitrogen monoxide (NO) with small TM clusters is far from satisfactory, which compromises a deep understanding of real catalyst devices. In this study, we report a density functional theory study of the adsorption properties of NO on the TM13 (TM = Rh, Pd, Ir, Pt) clusters employing the projected augmented wave method. We found that the interaction of NO with TM13 is much more complex than that for NO/TM(111). In particular, for low symmetry TM13 clusters, there is a strong rearrangement of the electronic charge density upon NO adsorption and, as a consequence, the adsorption energy shows a very complex dependence even for adsorption sites with the same local effective coordination. We found a strong enhancement of the binding energy of NO to the TM13 clusters compared with the TM(111) surfaces, as the antibonding NO states are not occupied for NO/TM13, and the general relationship based on the d-band model between adsorption energy and the center of gravity of the occupied d-states does not hold for the studied TM13 clusters, in particular, for clusters with low symmetry. In contrast with the adsorption energy trends, the geometric NO/TM13 parameters and the vibrational N-O frequencies for different coordination sites follow the same trend as for the respective TM(111) surfaces, while the changes in the frequencies between different surfaces and TM13 clusters reflect the strong NO-TM13 interaction.
机译:通过实验和理论技术已经广泛研究了NO在过渡金属(TM)表面的吸附。然而,我们对一氧化氮(NO)与小型TM团簇相互作用的原子了解远未令人满意,这损害了对实际催化剂装置的深入了解。在这项研究中,我们报告了使用投射增强波方法对TM13(TM = Rh,Pd,Ir,Pt)团簇上NO吸附特性进行密度泛函理论研究。我们发现,NO与TM13的相互作用比NO / TM(111)的相互作用要复杂得多。特别是对于低对称性的TM13簇,NO吸附后电子电荷密度会发生强烈的重排,结果,即使对于具有相同局部有效配位的吸附位,吸附能也显示出非常复杂的依赖性。我们发现,与TM(111)表面相比,NO与TM13团簇的结合能大大增强,这是因为NO / TM13没有占据反键NO态,并且基于吸附之间的d带模型的一般关系对于研究的TM13团簇,尤其是具有低对称性的团簇,能量和所占d状态的重心不成立。与吸附能趋势相反,不同配位点的几何NO / TM13参数和振动NO频率遵循与相应TM(111)表面相同的趋势,而不同表面和TM13簇之间的频率变化反映了强大的NO-TM13相互作用。

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