Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.

Detalhes bibliográficos
Autor(a) principal: Nogueira, Maria Auxiliadora das Neves
Data de Publicação: 2003
Outros Autores: Ferraz, Wilmar Barbosa, Sabioni, Antônio Claret Soares
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFOP
Texto Completo: http://www.repositorio.ufop.br/handle/123456789/4451
http://dx.doi.org/10.1590/S1516-14392003000200010
Resumo: Zinc self-diffusion coefficients were measured in polycrystalline ZnO of high density (>99% of the theoretical density) and of high purity (> 99.999%). The diffusion experiments were performed from 1006 to 1377 °C, in oxygen atmosphere, for times between 16 and 574 h. The diffusion profiles were established by means of Residual Activity Method using the 65Zn radioactive isotope as zinc tracer. In our experimental conditions, the zinc volume diffusion coefficients can be described by the following Arrhenius relationship: D(cm2/s) = 1.57×10-3 exp[(-2.66 ± 0.26) eV/kT]. In the same experimental conditions, the grain-boundary diffusion coefficients are approximately 4 orders of magnitude greater than the volume diffusion coefficients, and can be described by the Arrhenius relation: D’δ (cm3/s) = 1.59×10-6 exp[(-2.44 ± 0.45) eV/kT], where D’ is the grain-boundary diffusion coefficient and δ is the grain boundary width.
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spelling Nogueira, Maria Auxiliadora das NevesFerraz, Wilmar BarbosaSabioni, Antônio Claret Soares2015-02-20T15:09:32Z2015-02-20T15:09:32Z2003NOGUEIRA, M. A. das N.; FERRAZ, W. B.; SABIONI, A. C. S. Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics. Materials Research, São Carlos, v. 6, n. 2, p. 167-171, 2003. Disponível em: <http://www.scielo.br/pdf/mr/v6n2/16019.pdf>. Acesso em: 13 fev. 2015.1516-1439http://www.repositorio.ufop.br/handle/123456789/4451http://dx.doi.org/10.1590/S1516-14392003000200010Zinc self-diffusion coefficients were measured in polycrystalline ZnO of high density (>99% of the theoretical density) and of high purity (> 99.999%). The diffusion experiments were performed from 1006 to 1377 °C, in oxygen atmosphere, for times between 16 and 574 h. The diffusion profiles were established by means of Residual Activity Method using the 65Zn radioactive isotope as zinc tracer. In our experimental conditions, the zinc volume diffusion coefficients can be described by the following Arrhenius relationship: D(cm2/s) = 1.57×10-3 exp[(-2.66 ± 0.26) eV/kT]. In the same experimental conditions, the grain-boundary diffusion coefficients are approximately 4 orders of magnitude greater than the volume diffusion coefficients, and can be described by the Arrhenius relation: D’δ (cm3/s) = 1.59×10-6 exp[(-2.44 ± 0.45) eV/kT], where D’ is the grain-boundary diffusion coefficient and δ is the grain boundary width.Zinc oxideZinc diffusionGrain boundaryVaristorDiffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleO periódico Materials Research dá permissão ao RI/UFOP para depositar uma cópia eletrônica dos artigos publicados por esse periódico em que ao menos um dos autores é aluno ou professor da UFOP. Contato via email em 25 out. 2013.info:eu-repo/semantics/openAccessengreponame:Repositório Institucional da UFOPinstname:Universidade Federal de Ouro Preto (UFOP)instacron:UFOPLICENSElicense.txtlicense.txttext/plain; charset=utf-82636http://www.repositorio.ufop.br/bitstream/123456789/4451/2/license.txtc2ffdd99e58acf69202dff00d361f23aMD52ORIGINALARTIGO_Diffusion65ZnRadiotracer.pdfARTIGO_Diffusion65ZnRadiotracer.pdfapplication/pdf603731http://www.repositorio.ufop.br/bitstream/123456789/4451/1/ARTIGO_Diffusion65ZnRadiotracer.pdfc31fdfae2525678c22a24abe0c7ce697MD51123456789/44512019-06-18 12:14:44.391oai:localhost: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Repositório InstitucionalPUBhttp://www.repositorio.ufop.br/oai/requestrepositorio@ufop.edu.bropendoar:32332019-06-18T16:14:44Repositório Institucional da UFOP - Universidade Federal de Ouro Preto (UFOP)false
dc.title.pt_BR.fl_str_mv Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
title Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
spellingShingle Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
Nogueira, Maria Auxiliadora das Neves
Zinc oxide
Zinc diffusion
Grain boundary
Varistor
title_short Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
title_full Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
title_fullStr Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
title_full_unstemmed Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
title_sort Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics.
author Nogueira, Maria Auxiliadora das Neves
author_facet Nogueira, Maria Auxiliadora das Neves
Ferraz, Wilmar Barbosa
Sabioni, Antônio Claret Soares
author_role author
author2 Ferraz, Wilmar Barbosa
Sabioni, Antônio Claret Soares
author2_role author
author
dc.contributor.author.fl_str_mv Nogueira, Maria Auxiliadora das Neves
Ferraz, Wilmar Barbosa
Sabioni, Antônio Claret Soares
dc.subject.por.fl_str_mv Zinc oxide
Zinc diffusion
Grain boundary
Varistor
topic Zinc oxide
Zinc diffusion
Grain boundary
Varistor
description Zinc self-diffusion coefficients were measured in polycrystalline ZnO of high density (>99% of the theoretical density) and of high purity (> 99.999%). The diffusion experiments were performed from 1006 to 1377 °C, in oxygen atmosphere, for times between 16 and 574 h. The diffusion profiles were established by means of Residual Activity Method using the 65Zn radioactive isotope as zinc tracer. In our experimental conditions, the zinc volume diffusion coefficients can be described by the following Arrhenius relationship: D(cm2/s) = 1.57×10-3 exp[(-2.66 ± 0.26) eV/kT]. In the same experimental conditions, the grain-boundary diffusion coefficients are approximately 4 orders of magnitude greater than the volume diffusion coefficients, and can be described by the Arrhenius relation: D’δ (cm3/s) = 1.59×10-6 exp[(-2.44 ± 0.45) eV/kT], where D’ is the grain-boundary diffusion coefficient and δ is the grain boundary width.
publishDate 2003
dc.date.issued.fl_str_mv 2003
dc.date.accessioned.fl_str_mv 2015-02-20T15:09:32Z
dc.date.available.fl_str_mv 2015-02-20T15:09:32Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
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dc.identifier.citation.fl_str_mv NOGUEIRA, M. A. das N.; FERRAZ, W. B.; SABIONI, A. C. S. Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics. Materials Research, São Carlos, v. 6, n. 2, p. 167-171, 2003. Disponível em: <http://www.scielo.br/pdf/mr/v6n2/16019.pdf>. Acesso em: 13 fev. 2015.
dc.identifier.uri.fl_str_mv http://www.repositorio.ufop.br/handle/123456789/4451
dc.identifier.issn.none.fl_str_mv 1516-1439
dc.identifier.doi.none.fl_str_mv http://dx.doi.org/10.1590/S1516-14392003000200010
identifier_str_mv NOGUEIRA, M. A. das N.; FERRAZ, W. B.; SABIONI, A. C. S. Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics. Materials Research, São Carlos, v. 6, n. 2, p. 167-171, 2003. Disponível em: <http://www.scielo.br/pdf/mr/v6n2/16019.pdf>. Acesso em: 13 fev. 2015.
1516-1439
url http://www.repositorio.ufop.br/handle/123456789/4451
http://dx.doi.org/10.1590/S1516-14392003000200010
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