The effect of oxygen vacancies on the hyperfine properties of metal-doped SnO2 (2017)
- Authors:
- USP affiliated authors: COHEN, RENATO - IF ; NAGAMINE, LUIZ CARLOS CAMARGO MIRANDA - IF
- Unidade: IF
- DOI: 10.1088/1361-6463/aa594c
- Subjects: NANOPARTÍCULAS; ESPECTROSCOPIA DO MOSSBAUER
- Language: Inglês
- Imprenta:
- Source:
- Título: Journal of Physics D: Applied Physics
- ISSN: 1361-6463
- Volume/Número/Paginação/Ano: v. 50, n. 11, p. 115103/1- 115103/11, 2017
- Status:
- Artigo possui versão em acesso aberto em repositório (Green Open Access)
- Versão do Documento:
- Versão submetida (Pré-print)
- Acessar versão aberta:
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ABNT
HERRERA ARAGÓN, Fermin Fidel et al. The effect of oxygen vacancies on the hyperfine properties of metal-doped SnO2. Journal of Physics D: Applied Physics, v. 50, n. 11, p. 115103/1- 115103/11, 2017Tradução . . Disponível em: https://doi.org/10.1088/1361-6463/aa594c. Acesso em: 08 abr. 2026. -
APA
Herrera Aragón, F. F., Villegas-Lelovsky, L., Martins, J. B. L., Coaquira, J. A. H., Cohen, R., Nagamine, L. C. C. M., & Morais, P. C. de. (2017). The effect of oxygen vacancies on the hyperfine properties of metal-doped SnO2. Journal of Physics D: Applied Physics, 50( 11), 115103/1- 115103/11. doi:10.1088/1361-6463/aa594c -
NLM
Herrera Aragón FF, Villegas-Lelovsky L, Martins JBL, Coaquira JAH, Cohen R, Nagamine LCCM, Morais PC de. The effect of oxygen vacancies on the hyperfine properties of metal-doped SnO2 [Internet]. Journal of Physics D: Applied Physics. 2017 ; 50( 11): 115103/1- 115103/11.[citado 2026 abr. 08 ] Available from: https://doi.org/10.1088/1361-6463/aa594c -
Vancouver
Herrera Aragón FF, Villegas-Lelovsky L, Martins JBL, Coaquira JAH, Cohen R, Nagamine LCCM, Morais PC de. The effect of oxygen vacancies on the hyperfine properties of metal-doped SnO2 [Internet]. Journal of Physics D: Applied Physics. 2017 ; 50( 11): 115103/1- 115103/11.[citado 2026 abr. 08 ] Available from: https://doi.org/10.1088/1361-6463/aa594c - Effects of Zn substitution in the magnetic and morphological properties of Fe-oxide-based core−shell nanoparticles produced ina single chemical synthesis
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