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Structure and Dynamics of Ferroelectric Domains in Polycrystalline Pb(Fe1/2Nb1/2)O3

机译:多晶Pb(Fe1 / 2Nb1 / 2)O3中铁电畴的结构和动力学

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摘要

A complex domain structure with variations in the morphology is observed at ambient temperature in monoclinic Pb(Fe1/2Nb1/2)O3. Using electron microscopy and piezoresponse force microscopy, it is possible to reveal micrometre-sized wedge, lamellar-like, and irregularly shaped domains. By increasing the temperature, the domain structure persists up to 80 °C, and then starts to disappear at around 100 °C due to the proximity of the ferroelectric–paraelectric phase transition, in agreement with macroscopic dielectric measurements. In order to understand to what degree domain switching can occur in the ceramic, the mobility of the domain walls was studied at ambient temperature. The in situ poling experiment performed using piezoresponse force microscopy resulted in an almost perfectly poled area, providing evidence that all types of domains can be easily switched. By poling half an area with 20 V and the other half with −20 V, two domains separated by a straight domain wall were created, indicating that Pb(Fe1/2Nb1/2)O3 is a promising material for domain-wall engineering.
机译:在单斜晶Pb(Fe1 / 2Nb1 / 2)O3中,在环境温度下观察到具有形态变化的复杂畴结构。使用电子显微镜和压电响应力显微镜,可以发现微米级的楔形,层状和不规则形状的畴。随着温度的升高,畴结构持续到80°C,然后由于铁电-顺电相变的接近而在100°C处消失,这与宏观介电测量结果一致。为了理解在陶瓷中畴转换能发生到什么程度,在环境温度下研究了畴壁的迁移率。使用压电响应力显微镜进行的原位极化实验产生了几乎完美的极化区域,这提供了可以轻松切换所有类型域的证据。通过极化20 V的一半区域和-20 V的另一半区域,创建了两个由直的畴壁分隔开的畴,这表明Pb(Fe1 / 2Nb1 / 2)O3是畴壁工程的有前途的材料。

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