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高压退火对0.65PMN-0.35PT薄膜结构、形貌及电学性能的影响 被引量:2
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作者 郭红力 杨焕银 +3 位作者 唐焕芳 侯海军 郑勇林 朱建国 《物理学报》 SCIE EI CAS CSCD 北大核心 2013年第13期174-179,共6页
利用射频磁控溅射技术在LaNiO3/SiO2/Si(100)基底上制备了厚度约为250nm的0.65PMN-0.35PT(PMN-PT)薄膜.研究高压氧氛围退火方式对PMN-PT薄膜晶体结构、形貌以及电学性能的影响.经过XRD测试发现,在高压氧气氛围中,温度为400C下退火后的PM... 利用射频磁控溅射技术在LaNiO3/SiO2/Si(100)基底上制备了厚度约为250nm的0.65PMN-0.35PT(PMN-PT)薄膜.研究高压氧氛围退火方式对PMN-PT薄膜晶体结构、形貌以及电学性能的影响.经过XRD测试发现,在高压氧气氛围中,温度为400C下退火后的PMN-PT薄膜具有纯的钙钛矿相结构,具有完全的(100)择优取向,且衍射峰尖锐,表明经过高压退火后的薄膜结晶极为充分.SEM表面形貌测试结果显示,经高压退火处理的PMN-PT薄膜表面呈现出棒状或泡状的形貌.铁电性能测试表明:氧气氛围压强4MPa,退火时间4h的PMN-PT薄膜样品具有较好的铁电性能,其剩余极化强度Pr达到10.544μC/cm2,且电滞回线形状较好,但漏电流较大,这可能是由于其微结构所导致.同时介电测试发现:PMN-PT薄膜样品具有极好的介电性能,其在1kHz下测试的介电常数εr达到913,介电损耗tgδ较小,仅为0.065. 展开更多
关键词 射频磁控溅射 高压退火 0 65pmn-0 35pt 介电
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A polarized micro-Raman study of a 0.65PbMg_(1/3)Nb_(2/3)O_3-0.35PbTiO_3 single crystal
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作者 Zhang Li-Yan Zhu Ke Liu Yu-Long 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第1期482-487,共6页
Polarized micro-Raman spectra of a 0.65PbMgl/3Nb2/303 0.35PbTiO3 (0.65PMN-0.35PT) single crystal poled in the [001] direction are obtained in a wide frequency range (50 2000 cm^-1) at different temperatures. The b... Polarized micro-Raman spectra of a 0.65PbMgl/3Nb2/303 0.35PbTiO3 (0.65PMN-0.35PT) single crystal poled in the [001] direction are obtained in a wide frequency range (50 2000 cm^-1) at different temperatures. The best fit to the Raman spectrum at 77 K is achieved using 17 Lorenzians to convolute into it, and this is proved to be a reasonable fit. According to the group theory and selection rules of overtone and combinational modes, apart from the seven Raman modes that are from first-order Raman scattering, the remaining ones are attributed to being from second-order Raman scattering. A comparison between the experimental results and theoretical predictions shows that they are in satisfactory agreement with each other. Our results indicate that at 77 K the sample belongs to the rhombohedral symmetry with the C^53v(R3m) space group (Z = 1). In our study, on heating, the 0.65PMN 0.35PT single crystal undergoes a rhombohedral → tetragonal → cubic phase transition sequence. The two phase transitions occur at 340 and 440 K, which correspond to the disappearance of the soft mode near 106 cm-1 recorded in VV polarization and the vanishing of the band around 780 cm^-1 in VH polarization, respectively. 展开更多
关键词 0.65pmn-0.35pt polarized micro-Raman second-order Raman scattering phase tran-sition
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