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Flexoelectric aging effect in ferroelectric materials

机译:铁电材料中的柔性电老化效应

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摘要

In spite of the flexoelectric effect being a universal phenomenon in the ferroelectric perovskites, the current understanding of flexoelectric aging in ferroelectrics is, actually, rather incomplete. In this paper, we have fabricated a series of Mn-doped BaTiO3 perovskite ceramics (BaTi1-xMnxO3, x = 0.1 and 1, BTMO) to systematically investigate the corresponding flexoelectric aging behavior by controlling the concentration of Mn. We found that the variation of Mn dopant significantly effects the Curie temperature, dielectric constant, flexoelectric aging, and flexoelectric coefficient of the BTMO ceramics. Especially for the BTMO (0.1) ceramics, obvious ferroelectric aging and flexoelectric aging phenomenon are observed at room temperature. The main reason for aging of BTMO ceramics is that the doping of Mn introduces oxygen vacancies, which tend to be stable under the action of strain gradient and electric field. Therefore, the results presented in this paper verify that the flexoelectric aging in Mn-doped BTO ceramics is closely related to ferroelectric fatigue.
机译:尽管柔性电效应在铁电钙钛矿中是一种普遍现象,但目前对铁电体中柔性电老化的理解实际上相当不完整。本文制备了一系列Mn掺杂的BaTiO3钙钛矿陶瓷(BaTi1-xMnxO3,x = 0.1%和1%,BTMO),通过控制Mn浓度系统地研究了相应的柔曲电老化行为。结果表明,Mn掺杂剂的变化对BTMO陶瓷的居里温度、介电常数、柔性电老化和柔性电系数有显著影响。特别是BTMO(0.1%)陶瓷,在室温下观察到明显的铁电老化和柔性电老化现象。BTMO陶瓷老化的主要原因是Mn的掺杂引入了氧空位,在应变梯度和电场的作用下氧空位趋于稳定。因此,本文的研究结果验证了Mn掺杂BTO陶瓷的挠电老化与铁电疲劳密切相关。

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