Article

Electrical characterization and impedance response of lanthanum doped barium titanate ceramics

Science of Sintering 01/2008; DOI:http://www.doaj.org/doaj?func=openurl&genre=article&issn=0350820X&date=2008&volume=40&issue=3&spage=283
Source: DOAJ

ABSTRACT The dielectric permittivity and dissipation factor of La-doped and undoped BaTiO3 were investigated as a function of frequency and temperature. The impedance response was used to study the electrical properties of La-doped BaTiO3 over the temperature range from room temperature (RT) to 350°C. La-doped and undoped BaTiO3, obtained by a modified Pechini method, were sintered in air at 1300°C for 2 and 16 hours. The impedance spectra were analyzed in terms of equivalent circuits involving resistors, capacitors and constant phase elements (CPE). The most suitable electrical circuit for the interpretation of experimental results is found to be the equivalent circuit consisting of resistors and CPE elements which replace the capacitor elements. The contribution of grain boundary resistance to the total resistance of a system is remarkable at low temperature. Dielectric permittivity of doped BaTiO3 was in the range of 8000 to 12000 at 1 kHz and the dissipation factor was less than 1%.

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Keywords

1 kHz
 
capacitor elements
 
capacitors
 
constant phase elements
 
CPE elements
 
dissipation factor
 
doped BaTiO3
 
electrical properties
 
equivalent circuit
 
equivalent circuits
 
grain boundary resistance
 
impedance response
 
impedance spectra
 
La-doped
 
La-doped BaTiO3
 
low temperature
 
room temperature
 
suitable electrical circuit
 
temperature range
 
undoped BaTiO3