Revived BBFTO double perovskite with improved dielectric properties for some possible device applications

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作者
Lutu Sahoo
B. N. Parida
Nimai C. Nayak
R. K. Parida
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[1] Siksha O Anusandhan University (Deemed to be University),Department of Physics, Faculty of Engineering & Technology
[2] Central Institute of Technology,Department of Physics
[3] Kokrajhar (Deemed to be University,Department of Chemistry, Faculty of Engineering & Technology
[4] MHRD,undefined
[5] Govt. of India),undefined
[6] BTC,undefined
[7] Siksha O Anusandhan University (Deemed to be University),undefined
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A solid-state reaction procedure was followed to synthesize the BaBi1.4Fe0.6TiO6 ceramic. To compensate for the Bi3+ evaporation during the high-temperature sintering process, more Bi3+ content was so selected, further, it adds more promising ferroelectric and dielectric orders. The monoclinic crystal system formation was checked by the X-Ray Diffraction and Rietveld refinement methods. The average crystallite size is 37.46 nm, while the average grain size is 137.28 nm, which implies that a single grain might have contained some single-phase crystallites. The Energy-Dispersive X-Ray spectrum confirmed the sample’s elemental purity. The material belongs to a perovskite phase, which was supported by some appeared usual vibrational modes in the Fourier-Transform Infrared analysis. The UV–Visible absorbance property results cutoff wavelength of 590 nm and the optical direct bandgap Eg = 2.53 eV. The remanent magnetization of 2Pr = 0.782µC/cm2 supports the ferroelectric nature. The room temperature (RT) dielectric parameter at 100 Hz has a higher ɛr (1408) and lower tanδ (0.24) as well as a higher transition (Td > 350 °C) and Curie temperature (Tc > 485 °C). Deviation from the Debye-type relaxation process and semiconducting nature were observed in the sample. The conductivity nature is obedient to the Arrhenius law, which results in dc conductivity activation energy, Ea = 0.94 eV.
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