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Structural and electrical characterization of zinc oxide doped with antimony

Juárez Díaz, G [autor] | Martínez Juárez, J [autor] | López Salazar, P [autor] | Peña Sierra, R [autor] | Contreras Rascon, Jorge Indalecio [autor] | Díaz Reyes, J [autor].
Tipo de material: Artículo
 en línea Artículo en línea Tema(s): Óxido de zinc | Antimonio | Propiedades eléctricasTema(s) en inglés: Zinc oxide | Antimony | Electrical propertiesNota de acceso: Acceso en línea sin restricciones En: Mexican Journal of Materials Science and Engineering. volumen 1, número 2 (August 2014), páginas 35-39. --ISSN: 2395-9630Número de sistema: 3305Resumen:
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This work report on the structural and electrical characteristics of zinc oxide single crystal samples doped with antimony. Doping was carried out by antimony thermal diffusion at 1000 °C for periods of one and two hours under nitrogen environment from a solid source formed by antimony oxide. X-ray diffraction was used to determine the crystalline phases in samples and the structural change owing to diffusion. Electrical characterization by Hall effect and I-V curves showed an increase in acceptor concentration and conductivity which demonstrates that doping is effective and create acceptors in zinc oxide samples.

Recurso en línea: http://intranet.matematicas.uady.mx/mjmatse/volumenes/volumen1/2/MJMATSE_1_2_35.pdf
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Acceso en línea sin restricciones

This work report on the structural and electrical characteristics of zinc oxide single crystal samples doped with antimony. Doping was carried out by antimony thermal diffusion at 1000 °C for periods of one and two hours under nitrogen environment from a solid source formed by antimony oxide. X-ray diffraction was used to determine the crystalline phases in samples and the structural change owing to diffusion. Electrical characterization by Hall effect and I-V curves showed an increase in acceptor concentration and conductivity which demonstrates that doping is effective and create acceptors in zinc oxide samples. eng

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