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A theoretical study of the effects of transition metal dopants on the adsorption and dissociation of hydrogen on nickel clusters

机译:过渡金属掺杂对镍团簇上氢吸附和解离影响的理论研究

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The structure, stability, adsorption, and dissociation of H_2 on nickel clusters doped with late transition metals were investigated using density functional theory with the BP86 functional. Molecular hydrogen physisorption occurred at a vertex atom with a low coordination number. Charge transfer between clusters and the H_2 molecule stabilized the physisorption. The chemisorption of H_2 occurred at the bridge sites, without any structural or spin change of the clusters. Among the pentamer clusters, Cd, Zn, and Au had the lowest chemisorption energies, while Ir and Pt had higher chemisorption energies for hydrogen. The computed reaction energies and activation barriers for the dissociation mechanism showed that dopants such as Rh, Pd, Pt, and Au have endothermic reaction energies and low activation barriers. This facilitates the reversible adsorption/dissociation of the H_ 2 molecule on these metal-doped clusters. The dopant atoms play a major role in modulating the physisorption, chemisorption, and dissociation mechanism of H_2 on nickel clusters.
机译:利用密度泛函理论和BP86泛函理论研究了H_2在掺杂有晚过渡金属的镍团簇上的结构,稳定性,吸附和离解。分子氢的物理吸附发生在配位数低的顶点原子上。簇与H_2分子之间的电荷转移稳定了物理吸附。 H_2的化学吸附发生在桥位,而簇的结构或自旋没有任何变化。在五聚体簇中,Cd,Zn和Au具有最低的化学吸附能,而Ir和Pt具有较高的氢化学吸附能。计算得出的离解机理的反应能和活化能垒表明,Rh,Pd,Pt和Au等掺杂剂具有吸热反应能和较低的活化能垒。这促进了H_2分子在这些金属掺杂簇上的可逆吸附/解离。掺杂原子在调节H_2在镍簇上的物理吸附,化学吸附和解离机理中起主要作用。

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