2005
DOI: 10.1063/1.1870100
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Frequency-temperature response of ferroelectromagnetic Pb(Fe1∕2Nb1∕2)O3 ceramics obtained by different precursors. Part II. Impedance spectroscopy characterization

Abstract: The dielectric behavior of ferroelectromagnetic Pb(Fe1∕2Nb1∕2)O3 ceramics obtained using the traditional ceramic method employing three different precursors was investigated by impedance spectroscopy in the temperature range of 200–300°C. This study was carried out by means of the simultaneous analysis of the complex impedance Z̃, electric modulus M̃, and admittance Ỹ functions from the measurements in the frequency range of 20Hz–1MHz. In correspondence to a previous structural, morphological, and temperature… Show more

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Cited by 123 publications
(50 citation statements)
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“…These values are much nearer to the activation energy values obtained from M 00 spectra rather than to those from spectra of Z 00 . Thus, the similarity between these two values confirms the statement [37].…”
Section: Conductivitysupporting
confidence: 87%
“…These values are much nearer to the activation energy values obtained from M 00 spectra rather than to those from spectra of Z 00 . Thus, the similarity between these two values confirms the statement [37].…”
Section: Conductivitysupporting
confidence: 87%
“…The localized short range movement of charge carriers is dominant in modulus formalism and in case of long range movement of charge carriers the conductive behaviors is analyzed by Z 00 spectra [45]. The combined plot of M 00 and Z 00 also helps to detect the small capacitance value as well as larger resistance.…”
Section: Complex Impedance Spectroscopy Analysismentioning
confidence: 99%
“…The inset shows the Arrhenius plot for x = 0.6 sample. the equivalent circuit based on brick layer model [45] is employed as shown in Fig. 6.…”
Section: Complex Impedance Spectroscopy Analysismentioning
confidence: 99%
“…An equivalent circuit based on impedance and modulus spectra provides the physical process occurring inside the sample. Impedance spectroscopic studies of electrochemical properties of electrode alloys, [16,17], ferro-electromagnetic ceramic Pb(Fe 1/2 Nb 1/2 )O 3 [18], and magnetoelectric single-phase Bi 6 Fe 2 Ti 3 O 12 compounds [19], as well as Pb(Zr,Ti)O 3 (PZT)/CoFe 2 O 4 (CFO) multilayers composite thin films [20,21] have been carried out; they described the connection between microstructure and electrical properties and dielectric behaviors with the help of impedance spectroscopy.…”
Section: Introductionmentioning
confidence: 99%