首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Molecular adsorption of NO on free-standing and on graphene-supported Mo3W5 cluster: a density functional theory investigation
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Molecular adsorption of NO on free-standing and on graphene-supported Mo3W5 cluster: a density functional theory investigation

机译:分子在自由态和石墨烯支撑的Mo3W5团簇上的NO分子吸附:密度泛函理论研究

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摘要

The adsorption of molecular NO on the free-standing and graphene-supported Mo3W5 cluster is studied using methods from the gradient-corrected density functional theory. Before, the effect of the graphene support on the properties of the metal cluster was investigated. The interaction between the metal cluster and the graphene sheet takes place mainly through W atoms, which form up to three bonds with the support. Interaction energies are in the range from 0.6 to 1.5 eV. An amount of charge of about 0.4-0.5 e(-) is transferred from the cluster to the support. Geometric distortions in the metal aggregate are negligible. An important decrease in the magnetic moment of Mo3W5 with respect to its free-standing value is observed after the interaction with the support. Molecular NO adsorbs on sites involving W atoms only, both for the free-standing and the supported metal cluster. Adsorption energies are in a range from 2 to 4 eV. A parallel mode is the preferred mode from an energetic point of view. Moreover, for that parallel adsorption mode, the N-O bond is more effectively activated. Magnetic moments change largely after adsorption indicating important rearrangement in the electronic configuration of the metal cluster. An important amount of electronic charge is transferred both from the free-standing and from the supported metal cluster to NO. The amount of charge transferred seems to be closely related to the activation of the N-O bond. The effect of the graphene sheet on the catalytic properties of Mo3W5 seems to be negligible, with the exception of some changes in the electronic configuration of the cluster.
机译:利用梯度校正密度泛函理论研究了分子NO在石墨烯负载的自支撑Mo3W5团簇上的吸附。在此之前,研究了石墨烯载体对金属团簇性能的影响。金属簇与石墨烯片之间的相互作用主要通过W原子发生,W原子与载体形成多达三个键。相互作用能在0.6至1.5 eV的范围内。大约0.4-0.5 e(-)的电荷量从簇转移到支撑物上。金属聚集体中的几何变形可以忽略不计。与支撑物相互作用后,观察到Mo3W5的磁矩相对于其自支撑值有显着降低。分子NO仅吸附在涉及W原子的位点上,无论是对于独立分子还是在负载金属簇上。吸附能在2到4 eV之间。从能量的观点来看,并行模式是首选模式。而且,对于该平行吸附模式,N-O键被更有效地激活。吸附后磁矩发生很大变化,表明金属簇的电子结构发生了重要的重排。大量的电子电荷都从独立式和支撑金属簇转移到NO。转移的电荷量似乎与N-O键的激活密切相关。石墨烯片对Mo3W5催化性能的影响似乎可以忽略不计,除了簇的电子构型有一些变化。

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