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Features of the Structure and Electrophysical Properties of Solid Solutions of the System (1-x-y) NaNbO(3)-xKNbO(3)-yCd(0.5)NbO(3)
Ferroelectric ceramic materials based on the (1-x-y) NaNbO(3)-xKNbO(3)-yCd(0.5)NbO(3) system (x = 0.05–0.65, y = 0.025–0.30, Δx = 0.05) were obtained by a two-stage solid-phase synthesis followed by sintering using conventional ceramic technology. It was found that the region of pure solid solutions...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8304939/ https://www.ncbi.nlm.nih.gov/pubmed/34300928 http://dx.doi.org/10.3390/ma14144009 |
Sumario: | Ferroelectric ceramic materials based on the (1-x-y) NaNbO(3)-xKNbO(3)-yCd(0.5)NbO(3) system (x = 0.05–0.65, y = 0.025–0.30, Δx = 0.05) were obtained by a two-stage solid-phase synthesis followed by sintering using conventional ceramic technology. It was found that the region of pure solid solutions extends to x = 0.70 at y = 0.05 and, with increasing y, it narrows down to x ≤ 0.10 at y = 0.25. Going out beyond the specified concentrations leads to the formation of a heterogeneous region. It is shown that the grain landscape of all studied ceramics is formed during recrystallization sintering in the presence of a liquid phase, the source of which is unreacted components (Na(2)CO(3) with T(melt.) = 1126 K, K(2)CO(3) with T(melt.) = 1164 K, KOH with T(melt.) = 677 K) and low-melting eutectics in niobate mixtures (NaNbO(3), T(melt). = 1260 K, KNbO(3), T(melt.) = 1118 K). A study of the electrophysical properties at room temperature showed the nonmonotonic behavior of all dependences with extrema near symmetry transitions, which corresponds to the logic of changes in the electrophysical parameters in systems with morphotropic phase boundaries. An analysis of the evolution of dielectric spectra made it possible to distinguish three groups of solid solutions: classical ferroelectrics (y = 0.05–0.10), ferroelectrics with a diffuse phase transition (y = 0.30), and ferroelectrics relaxors (y = 0.15–0.25). A conclusion about the expediency of using the obtained data in the development of materials and devices based on such materials has been made. |
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