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J Phys Chem A ; 115(5): 569-76, 2011 Feb 10.
Artigo em Inglês | MEDLINE | ID: mdl-21192697

RESUMO

The density functional method with relativistic effective core potential has been employed to investigate systematically the geometrical structures, relative stabilities, growth-pattern behaviors, and electronic properties of small bimetallic M(2)Au(n) (M = Ag, Cu; n = 1-10) and pure gold Au(n) (n ≤ 12) clusters. The optimized geometries reveal that M(2) substituted Au(n+2) clusters and one Au atom capped M(2)Au(n-1) structures are dominant growth patterns of the stable alloyed M(2)Au(n) clusters. The calculated averaged atomic binding energies, fragmentation energies, and the second-order difference of energies as a function of the cluster size exhibit a pronounced even-odd alternation phenomenon. The analytic results exhibit that the planar structure Ag(2)Au(4) and Cu(2)Au(2) isomers are the most stable geometries of Ag(2)Au(n) and Cu(2)Au(n) clusters, respectively. In addition, the HOMO-LUMO gaps, charge transfers, chemical hardnesses and polarizabilities have been analyzed and compared further.


Assuntos
Ligas/química , Cobre/química , Eletroquímica , Ouro/química , Simulação de Dinâmica Molecular , Prata/química , Análise por Conglomerados , Elétrons , Ligas de Ouro/química , Isomerismo , Modelos Químicos
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