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Growth of Single Crystals of (K 1-x Na x )NbO 3 by the Self-Flux Method and Characterization of Their Phase Transitions.

Authors :
Trung DT
Uwiragiye E
Lan TT
Fisher JG
Lee JS
Mok J
Lee J
Naqvi FUH
Ko JH
Source :
Materials (Basel, Switzerland) [Materials (Basel)] 2024 Aug 24; Vol. 17 (17). Date of Electronic Publication: 2024 Aug 24.
Publication Year :
2024

Abstract

In this study, single crystals of (K <subscript>1-x</subscript> Na <subscript>x</subscript> )NbO <subscript>3</subscript> are grown by the self-flux crystal growth method and their phase transitions are studied using a combination of Raman scattering and impedance spectroscopy. X-ray diffraction shows that single crystals have a perovskite structure with monoclinic symmetry. Single crystal X-ray diffraction shows that single crystals have monoclinic symmetry at room temperature with space group P12 <subscript>1</subscript> 1. Electron probe microanalysis shows that single crystals are Na-rich and A-site deficient. Temperature-controlled Raman scattering shows that low temperature monoclinic-monoclinic, monoclinic-tetragonal and tetragonal-cubic phase transitions take place at -20 °C, 220 °C and 440 °C. Dielectric property measurements show that single crystals behave as a normal ferroelectric material. Relative or inverse relative permittivity peaks at ~-10 °C, ~230 °C and ~450 °C with hysteresis correspond to the low temperature monoclinic-monoclinic, monoclinic-tetragonal and tetragonal-cubic phase transitions, respectively, consistent with the Raman scattering results. A conduction mechanism with activation energies of about 0.5-0.7 eV was found in the paraelectric phase. Single crystals show polarization-electric field hysteresis loops of a lossy normal ferroelectric. The combination of Raman scattering and impedance spectroscopy is effective in determining the phase transition temperatures of (K <subscript>1-x</subscript> Na <subscript>x</subscript> )NbO <subscript>3</subscript> .

Details

Language :
English
ISSN :
1996-1944
Volume :
17
Issue :
17
Database :
MEDLINE
Journal :
Materials (Basel, Switzerland)
Publication Type :
Academic Journal
Accession number :
39274588
Full Text :
https://doi.org/10.3390/ma17174195