单斜晶系
四方晶系
材料科学
拉曼光谱
结晶学
单晶
铁电性
相变
电介质
凝聚态物理
晶体结构
光学
化学
物理
光电子学
作者
Doan Thanh Trung,Eugenie Uwiragiye,Tran Thi Lan,John G. Fisher,Jong‐Sook Lee,Jungwi Mok,Junseong Lee,Furqanul Hassan Naqvi,Jae‐Hyeon Ko
出处
期刊:Materials
[Multidisciplinary Digital Publishing Institute]
日期:2024-08-24
卷期号:17 (17): 4195-4195
被引量:2
摘要
In this study, single crystals of (K1−xNax)NbO3 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 P1211. 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 (K1−xNax)NbO3.
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