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Artigo 2011

Thermodynamic and electronic study of Ga1 - XMnxN films. A theoretical study

Autores

Gomes, M. C.
Sambrano, J. R.
Da Silva, J. H.Dias
De Souza, A. R.
Beltrán, A.

Surface Science , vol. 605 , no. 15-16 , pp. 1431-1437

ISSN: 00396028

1
Citações
6
Autores

Resumo

Periodic slab calculations based on density functional theory were performed at the B3LYP level to gain insight into the surfaces of wurtzite GaN nanostructures. The (101̄0) and (112̄0) GaN surfaces are the most thermodynamically stable surfaces, the energy of the former being slightly smaller than that of the latter. The thermodynamic stability associated with the equilibrium shape of nanowires was determined using the calculated values. Doping with Mn further decreases the surface energy of (101̄0) and (112̄0). The minimum surface energy of Ga1 - xMnxN (0.04 ≤ x ≤ 0.17) is found at x ∼ 0.08, for (101̄0) and (112̄0) slab models. Substitution of Ga with Mn in different positions relative to the surface shows that the total energy increases as the Mn atoms move from the surface layer to the interior sites of the slabs. Mn doping is also responsible for decreases in the band gap energy: the minimum calculated band gap in the Ga1 - xMnxN (101̄0) slab was found at x ∼ 0.17, whereas the (112̄0) surface presented the corresponding minimum at x ∼ 0.04. The magnetic moments associated with Mn were observed to increase as the ion positions moved closer to the surfaces. © 2011 Elsevier B.V. All rights reserved.

Palavras-chave

Density functional theory First principles calculations GaMnN

Condensed Matter Physics (PHYS) Surfaces and Interfaces (PHYS) Surfaces, Coatings and Films (MATE) Materials Chemistry (MATE)
: Scopus
Última atualização: 2026-06-25
: 2-s2.0-79959824777
PII: S0039602811001841