Investigating the Correlation between the Microstructure and Electrical Properties of FeSbO4 Ceramics

MATERIALS(2022)

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摘要
FeSbO4 powder was prepared using the solid-state reaction method in this work. Afterward, the dense and porous ceramics were obtained by sintering the pressed powder calcined at temperatures of 900 and 1000 degrees C for 4 h. Rietveld profile analysis of the X-ray powder diffraction data showed that FeSbO4 adopts the trirutile-type structure (space group P4(2)/mnm, with a congruent to 4.63 angstrom and c congruent to 9.23 angstrom). SEM images showed that the powder calcined at 900 degrees C after being sintered at 1200 degrees C resulted in ceramics of higher crystallinity, larger grains, and consequently, low porosity. The dielectric properties were measured in the frequency range of 10(-1) Hz-1 MHz as a function of temperature (25-250 degrees C). The real (sigma') and imaginary (sigma '') parts of the complex conductivity increase with rising annealing temperature for both samples. The real conductivity in the AC region for f = 100 kHz was 1.59 x 10(-6) S.cm(-1) and 7.04 x 10(-7) S.cm(-1) for the ceramic samples obtained from the powder calcined at 900 (C-900) and 1000 degrees C (C-1000), respectively. Furthermore, the dielectric constants (k') measured at room temperature and f = 100 kHz were 13.77 (C-900) and 6.27 (C-1000), while the activation energies of the grain region were E-a = 0.53 eV and E-a = 0.49 eV, respectively. Similar activation energy (E-a = 0.52 eV and 0.49 eV) was also obtained by the brick-layer model and confirmed by the adjustment of activation energy by DC measurements which indicated an absence of the porosity influence on the parameter. Additionally, loss factor values were obtained to be equal to 3.8 (C-900) and 5.99 (C-1000) for measurements performed at 100 Hz, suggesting a contribution of the conductivity originated from the combination or accommodation of the pores in the grain boundary region. Our results prove that the microstructural factors that play a critical role in the electrical and dielectric properties are the average grain size and the porosity interspersed with the grain boundary region.
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关键词
iron antimonate, FeSbO4, powder, ceramics
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