Propriedades elétricas da alfa hematita ( α-Fe2O3) dopada com óxido de bismuto (Bi2O3)
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Universidade Estadual de Ponta Grossa
Abstract
In this work, the influence of the Bi2O3 dopant on the varistor electrical properties of
the α-Fe2O3-Bi2O3 binary system was investigated. The used concentrations of doping
had varied in 0.5%, 1.0%, 1.5%, 1.8%, 2.0%, 2.5% and 3.0% by mol. The processing
used was the conventional method of misture of oxides. Five samples were formed for
each composition at a pressure of 4.5 Mpa and sintered at 1280°C for 1 hour in ambient
atmosphere with an intermediate level at 350 °C for 1 hour. After sintering, the
densification of the ceramic samples was verified, with a value of 5.07 g/cm for the
pure α-Fe2O3 system and 4.78 g/cm for the system with the addition of 3.0% in mol of
Bi2O3. The study of varistor behavior properties for systems α-Fe2O3-Bi2O3 was carried
out in direct current, in the ambient temperature and, depending on the temperature
(up to 300 ° C). It was observed that the dopant content alters the electrical behavior
of ceramic samples based on α-Fe2O3. The electrical parameters found are α = 1.45,
Er = 1102 V/cm and 4,7 Vb V/cm for the binary system with 2.0% in mol of Bi2O3, α =
1.48, Er = 1156 V/cm and 5,0 Vb V/cm for the binary system with 2.5% in mol of Bi2O3
and, α = 1.62, Er = 1143 V/cm and 4,4 Vb V/cm with the addition of 3.0% in mol of the
dopant, since all binary systems had a relatively high leakage current (If). Only for
concentrations above 2.0% in mol of Bi2O3, the increase in the dopant concentration
becomes favorable for the non-linear varistor behavior. This effect was due to the
increase in the concentration of the bismuth ferrite crystalline phase (FeBiO3), of low
electrical resistivity, characterized by DRX, together with the analysis EDS coupled to
the FEG. With the results obtained from the characterizations, it was possible to identify
that the FeBiO3 phase is formed in the grain boundary region of the microstructure.
This crystalline phase was considered as the electrical conduction mechanism
responsible for the nonlinear behavior of the α-Fe2O3-Bi2O3 binary varistor systems,
with resistive grain and conductive grain boundary.
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LUZ, Flavia Rafaela Bueno da. Propriedades elétricas da alfa hematita ( α-Fe2O3.) dopada com óxido de bismuto (Bi2O3). 2020. Dissertação (Mestrado em Engenharia de Materiais) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2020.
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