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Complex Impedance Analysis of Nb-Doped (Ba0.6Sr0.4)TiO3 PTC (Positive Temperature Coefficient) Thermistors

1992/09/01 by Toshishige Yamamoto Takao · 1 citation
Materials Science · Engineering · #Ferroelectric and Piezoelectric Materials #Electrical and Thermal Properties of Materials #Acoustic Wave Resonator Technologies

paper · doi:10.1143/jjap.31.3120

Abstract

Frequency-dependent complex impedances were measured in Nb-doped (Ba 0.6 Sr 0.4 )TiO 3 PTC (positive temperature coefficient) ceramics. The complex impedance data were analyzed in Cole-Cole-type equivalent circuits by the computer fitting method in order to determine individual resistance and capacitance values of the bulk grain and grain boundary. The PTC effect was found to have originated from the temperature-sensitive behavior of the grain boundary resistance. The temperature dependences of dielectric constants of both the bulk grain and grain boundary calculated on the basis of the two-layer model agreed closely to those predicted by Heywang's model. The width and potential height of the grain boundary layer were estimated to be 0.26 µm and 0.1 eV, respectively, in the temperature range below -20°C. The estimated donor density of 6×10 18 cm -3 was much lower than calculated from the amount of Nb 2 O 5 added.4

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