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Aditya Jain,Rakesh Saroha,Mukul Pastor,A.K. Jha,A.K. Panwar 한국물리학회 2016 Current Applied Physics Vol.16 No.8
Strontium and zirconium substituted barium titanate, Ba0.9Sr0.1Ti0.96Zr0.04O3 (BSZT) was prepared through the solid state reaction route. The compound was sintered for 6, 9 and 12 h and the effect of sintering duration has been studied. Structural investigation has been carried out using X-ray diffraction pattern of the samples following the Rietveld refinement, which confirms the formation of tetragonal phase with P4mm space group. The effect of Sr and Zr substitution in the BT lattice and effect of sintering duration in BSZT has been evaluated by Raman spectroscopy. The microstructural and dielectric studies show the increase in grain size as well as dielectric constant with increasing sintering duration. No appreciable change in Curie temperature (Tc) is observed for all three samples viz. BSZT6, BSZT9 and BSZT12. A decrease in activation energy and increase in diffusivity constant with increasing sintering duration is observed. I-V measurement was carried out to study the resistive properties of the synthesized compositions.