Transition-metal 13-atom clusters assessed with solid and surface-biased functionals


Autoria(s): PIOTROWSKI, Mauricio J.; PIQUINI, Paulo; ODASHIMA, Mariana M.; SILVA, Juarez L. F. Da
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

19/04/2012

19/04/2012

2011

Resumo

First-principles density-functional theory studies have reported open structures based on the formation of double simple-cubic (DSC) arrangements for Ru(13), Rh(13), Os(13), and Ir(13), which can be considered an unexpected result as those elements crystallize in compact bulk structures such as the face-centered cubic and hexagonal close-packed lattices. In this work, we investigated with the projected augmented wave method the dependence of the lowest-energy structure on the local and semilocal exchange-correlation (xc) energy functionals employed in density-functional theory. We found that the local-density approximation (LDA) and generalized-gradient formulations with different treatment of the electronic inhomogeneities (PBE, PBEsol, and AM05) confirm the DSC configuration as the lowest-energy structure for the studied TM(13) clusters. A good agreement in the relative total energies are obtained even for structures with small energy differences, e. g., 0.10 eV. The employed xc functionals yield the same total magnetic moment for a given structure, i.e., the differences in the bond lengths do not affect the moments, which can be attributed to the atomic character of those clusters. Thus, at least for those systems, the differences among the LDA, PBE, PBEsol, and AM05 functionals are not large enough to yield qualitatively different results. (C) 2011 American Institute of Physics. [doi: 10.1063/1.3577999]

Brazilian financial agency CNPq

Brazilian financial agency CAPES

Sao Paulo Science Foundation (FAPESP)

Identificador

JOURNAL OF CHEMICAL PHYSICS, v.134, n.13, 2011

0021-9606

http://producao.usp.br/handle/BDPI/16640

10.1063/1.3577999

http://dx.doi.org/10.1063/1.3577999

Idioma(s)

eng

Publicador

AMER INST PHYSICS

Relação

Journal of Chemical Physics

Direitos

openAccess

Copyright AMER INST PHYSICS

Palavras-Chave #AUGMENTED-WAVE METHOD #ELECTRONIC-STRUCTURE #CATALYTIC-ACTIVITY #TOTAL-ENERGY #MAGNETISM #GAS #SIZE #RH #PSEUDOPOTENTIALS #APPROXIMATION #Physics, Atomic, Molecular & Chemical
Tipo

article

original article

publishedVersion