Dielectric spectroscopy on Bi3Zn2Sb3O14 ceramic: an approach based on the complex impedance |
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Authors: | M.A.L. Nobre S. Lanfredi |
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Affiliation: | Faculdade de Ciências e Tecnologia—FCT, Universidade Estadual Paulista—UNESP, CP 467, CEP 19060-900, SP, Brazil |
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Abstract: | The dielectric properties and loss of Bi1.5ZnSb1.5O7 a poor-semiconducting ceramic were investigated by impedance spectroscopy, in the frequency range from 5 Hz to 13 MHz. Electric measurements were performed from 100 to 700 °C. Pyrochlore type phase was synthesized by the polymeric precursor method. Dense ceramic with 97% of the theoretical density was prepared by sintering via constant heating rate. The dielectric permittivity dependence as a function of frequency and temperature showed a strong dispersion at frequency lower than 10 kHz. The losses exhibit slight dependence with the frequency at low temperatures presenting a strong increase at temperatures higher than 400 °C. A decrease of the loss magnitude occurs with increasing frequency. Relaxation times were extracted using the dielectric functions Z″(ω) and M″(ω). The plots of the relaxation times τZ′ and τM″ as a function of temperature follow the Arrhenius law, where a single slope is observed with activation energy values equal to 1.38 and 1.37 eV, respectively. |
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Keywords: | A. Ceramics A. Electronic materials B. Chemical synthesis D. Dielectric properties D. Electrical properties |
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