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Structural, dielectric and electrocaloric properties of (Ba0.85Ca0.15)(Ti0.9Zr0.1−xSnx)O3 ceramics elaborated by sol–gel method
被引:0
|作者:
S. Belkhadir
A. Neqali
M. Amjoud
D. Mezzane
A. Alimoussa
E. Choukri
Y. Gagou
I. Raevski
M. El Marssi
Igor A. Luk’yanchuk
B. Rožič
Z. Kutnjak
机构:
[1] F.S.T.G. Université Cadi Ayyad,Laboratoire de la Matière Condensée et Nanostructures (LMCN)
[2] Université de Picardie Jules Verne,Laboratoire de Physique de la Matière Condensée (LPMC)
[3] Southern Federal University,Research Institute of Physics and Faculty of Physics
[4] Jozef Stefan Institute,Laboratory for Calorimetry and Dielectric Spectroscopy, Condensed Matter Physics Department
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摘要:
Ferroelectric ceramics (Ba0.85Ca0.15)(Ti0.9Zr0.1−xSnx)O3 (x = 0.00, 0.02, 0.04, 0.06) were elaborated by sol–gel method. Structural investigation revealed co-existence of tetragonal (P4mm) and orthorhombic (Pmm2) symmetries at room temperature for the undoped ceramic, while only a tetragonal structure (P4mm) was observed for the doped ceramics. Dielectric measurements indicate a dielectric relaxation process at high temperatures which is essentially related to the hopping of oxygen vacancies VO¨\documentclass[12pt]{minimal}
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\begin{document}$${\text{V}}_{\ddot{O}}$$\end{document}. Furthermore, a down shifting of the Curie temperature (TC) with increasing Sn4+ doping rate has been revealed. The temperature profiles of the Raman spectra unveiled the existence of polar nanoregions above the Curie temperature in all ceramics. The ferroelectric properties were found to be related to the microstructure. Electrocaloric effect was investigated in this system that revealed an electrocaloric responsivity of 0.225 × 10−6 K m/V for the composition with x = 0.04 Sn doping, where other remarkable physical properties were also observed.
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页码:14099 / 14111
页数:12
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