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Synthesis and dielectric properties of BCT ceramics co-substituted by Sm3+ and Fe3+ for capacitor applications

•Temperature coefficient (Tcc) is above 10%.•The value of tanδ is very small all over the temperature range.•The tetragonality decreases with Sm3+ and Fe3+ substitution.•Room temperature dielectric constant increases. Polycrystalline ferroelectric ceramics with compositional formula Ba0.70−x Ca0.30S...

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Bibliographic Details
Published in:Journal of alloys and compounds 2021-11, Vol.882, p.160619, Article 160619
Main Authors: Neha, Sharma, Preeti, Kumar, Vinod, Bhatnagar, Manoj, Kumar, Parveen, Prakash, Chandra
Format: Article
Language:English
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Summary:•Temperature coefficient (Tcc) is above 10%.•The value of tanδ is very small all over the temperature range.•The tetragonality decreases with Sm3+ and Fe3+ substitution.•Room temperature dielectric constant increases. Polycrystalline ferroelectric ceramics with compositional formula Ba0.70−x Ca0.30SmxTi1−xFexO3 (BCSTF) with (0, 0.005, 0.010, 0.015 and 0.020) were prepared by solid state reaction route and sintered at 1325 °C for 4 h. Single perovskite phase with tetragonal structure was confirmed from X-ray diffraction (XRD) analysis. The dielectric constant ‘ε’ and tangent loss ‘tanδ’ were studied for all the samples as a function of frequency (100 Hz to 100 kHz) and temperature (30–200 °C). A very small low ‘tanδ’ (0.9% at 100 kHz) was observed. The high value of temperature coefficient of capacitance ‘Tcc’ (~10%) was observed for all the BCSTF samples. P-E hysteresis loops were recorded for sample with x = 0.020 at different temperature. Electrocaloric effect ‘ECE’ was investigated and the temperature change ‘ΔT’ was found to be 0.53 K at 35 kV/cm with a high value of electrocaloric coefficient (0.15 K m/MV). The results show that the prepared ceramics can be useful in applications such as capacitor, dielectric bolometers, electrocaloric applications.
ISSN:0925-8388
1873-4669
DOI:10.1016/j.jallcom.2021.160619