铁电性
材料科学
矫顽力
极化(电化学)
成核
电场
电介质
凝聚态物理
单斜晶系
磁滞
切换时间
光学
结晶学
分析化学(期刊)
光电子学
晶体结构
热力学
化学
量子力学
色谱法
物理
物理化学
出处
期刊:Ferroelectrics
[Informa]
日期:2002-01-01
卷期号:269 (1): 99-104
被引量:5
标识
DOI:10.1080/00150190211151
摘要
Glycine Phosphite [NH 3 CH 2 COOH 3 PO 3 ], abbreviated as GPI, undergoes a para-ferroelectric phase transition from the monoclinic symmetry P2 1 /a to P2 1 at 224.7 K. We report here a systematic study of the polarization switching process in this crystal. Growth of these crystals from aqueous solution has been undertaken employing both solvent evaporation and slow cooling methods. Hysteresis loop measurements along the polar b -axis yielded a spontaneous polarization value of 0.5 w C/cm 2 and a coercive field of 2.5 kV/cm. Conventional Merz technique was employed for polarization switching studies, wherein bipolar square pulses were applied to the sample to induce domain reversal. The transient switching pulse that flows through the sample on application of the field was recorded. The maximum switching time required for domain switching was measured both as a function of electric field and temperature. The experimentally observed switching curves were fitted with the model based on the Pulvari-Kuebler theory of nucleation and growth of domains. From the experimental data, the values of mobility and activation field were obtained. It was observed that switching process in this crystal is predominantly governed by the forward growth of domain walls in the high field region. However, switching process in GPI crystal was found to be slower than that found in other glycine based ferroelectric crystals. Keywords: FerroelectricityHysteresis LoopDomainsPolarization Switching
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