Abstract
The crystal structure and physical properties of multiferroic polycrystalline Ca 2+-doped BiFeO 3 samples have been investigated. The present experimental investigation suggests that Bi 1xCa xFeO 3x/2 (x0.1) can be considered as a solid solution between BiFeO 3 and CaFeO 2.5. The oxidation state of Fe in these materials is +3 and charge balance occurs through the creation of oxygen vacancies. For each composition, two structural phase transitions are revealed as anomalies in the variable-temperature in situ x-ray diffraction data which is consistent with the well-established high-temperature structural transformation in pure BiFeO 3. All compositions studied show antiferromagnetic behaviour along with a ferromagnetic component that increases with Ca 2+ doping. The resistivities of the Bi 1xCa xFeO 3x/2 samples at room temperature are of the order of 10 9cm and decrease with increasing Ca 2+ content. Arrhenius plots of the resistivity show two distinct linear regions with activation energies in the range of 0.40.7 and 0.030.16eV. A correlation has been established between the critical temperatures associated with the structural phase transitions and the multiferroic properties. A composition of x=0.085 is predicted to show maximum magneto-electric coupling.
Original language | English |
---|---|
Article number | 045905 |
Journal | Journal of Physics Condensed Matter |
Volume | 24 |
Issue number | 4 |
DOIs | |
Publication status | Published - 1 Feb 2012 |
Externally published | Yes |