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      Diffusion of the 65Zn radiotracer in ZnO polycrystalline ceramics

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          Abstract

          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'delta (cm³/s) = 1.59×10-6 exp[(-2.44 ± 0.45) eV/kT], where D' is the grain-boundary diffusion coefficient and delta is the grain boundary width.

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          J. Am. Ceram. Soc.

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            Atom Movements Diffusion and Mass Transport in Solids

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              Crystal Imperfections and Chemical Reactivity of Solids

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                Author and article information

                Journal
                mr
                Materials Research
                Mat. Res.
                ABM, ABC, ABPol (São Carlos, , Brazil )
                1516-1439
                1980-5373
                June 2003
                : 6
                : 2
                : 167-171
                Affiliations
                [01] Ouro Preto MG orgnameUniversidade Federal de Ouro Preto orgdiv1Departamento de Física orgdiv2Laboratório de Difusão em Materiais Brazil
                [02] Belo Horizonte MG orgnameCentro de Desenvolvimento da Tecnologia Nuclear orgdiv1Comissão Nacional de Energia Nuclear Brazil
                Article
                S1516-14392003000200010 S1516-1439(03)00600210
                7165a38a-8b29-4a0e-88b8-cfdf1b9450c7

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 23 March 2003
                : 11 November 2001
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 12, Pages: 5
                Product

                SciELO Brazil

                Categories
                Articles presented at the I Simpósio Mineiro de Ciência dos Materiais, November 2001

                varistor,grain-boundary,zinc diffusion,zinc oxide
                varistor, grain-boundary, zinc diffusion, zinc oxide

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