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A density functional study of bare and hydrogenated platinum clusters

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2006

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Elsevier Science

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Abstract

We perform density functional theory calculations using Gaussian atomic-orbital methods within the generalized gradient approximation for the exchange and correlation to study the interactions in the bare and hydrogenated platinum clusters. The minimum-energy structures, binding energies, relative stabilities. vibrational frequencies and the highest occupied and lowest unoccupied molecular-orbital gaps of PtnHm (n = 1-5, m = 0-2) clusters are calculated and compared with previously studied pure platinum and hydrogenated platinum clusters. We investigate any magic behavior in hydrogenated platinum clusters and find that Pt4H2 is snore stable than its neighboring sizes. The lowest energy structure of Pt-4 is found to be a distorted tetrahedron and that of Pt-5 found to be a bridge site capped tetrahedron which is a new global minimum for Pt-5 cluster. The successive addition of H atoms to Pt-n clusters leads to an oscillatory change in the magnetic moment of Pt-3-Pt-5 clusters

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Platinum Clusters, DFT, Hydrogenated Platinum Clusters

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Citation

Sebetci, A. (2006). A density functional study of bare and hydrogenated platinum clusters. Chemical Physics, 331(1), 9-18.

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Source

Chemical Physics

Volume

331

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1

Start Page

9

End Page

18