首页> 外文期刊>Journal of Materials Science >Ferroelectric fatigue and polarization hysteresis behavior of a [001](c) Pb(In0.5Nb0.5)O-3-Pb(Mg1/3Nb2/3)O-3-PbTiO3 single crystal
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Ferroelectric fatigue and polarization hysteresis behavior of a [001](c) Pb(In0.5Nb0.5)O-3-Pb(Mg1/3Nb2/3)O-3-PbTiO3 single crystal

机译:[001](c)Pb(In0.5NB0.5)O-3-PB(Mg1 / 3NB2 / 3)O-3-PBTIO3单晶的铁电疲劳和极化滞后行为

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Under the cyclic loading of a strong bipolar electric field, severe and rapid ferroelectric fatigue phenomena were observed in a [001](c) poled 0.24PIN-0.49PMN-0.27PT single crystal, where both of coercive field E-c and remnant polarization P-r decrease sharply with electric cycling in a similar trend. The ferroelectric hysteresis dynamic characteristics of the fatigued sample were investigated systemically to explore the influence of electric fatigue on hysteresis behavior. Different relationships for E-c, P-r, hysteresis area < A > , saturation polarization P-s and back-switching polarization P-bc, vs temperature T or frequency f were characterized in the temperature region from 293 to 433 K and frequency region from 0.1 to 100 Hz. Our results showed that hysteresis parameters < A > and E-c decreased approximately linearly with T in the rhombohedral or tetragonal phase. However, anomalous increases of the P-r and P-s with T were observed in the nearly whole temperature region, which is in conflict with the previous studies. It is suggested that depinning of domains due to increase of temperature is an origin of the rejuvenation of fatigue and the increasing of P-r and P-s with T. Moreover, different linear scaling relations between Log < A > and Log(f) were observed at different frequency ranges, which may contribute to heterogeneous nucleation or thermally activated creep motion of domains.
机译:在强双极电场的循环加载下,在[001](c)极化的0.24PIN-0.49PMN-0.27PT单晶中观察到了严重而快速的铁电疲劳现象,其中矫顽场E-c和残余极化P-r随着电循环的相似趋势急剧下降。系统研究了疲劳试样的铁电滞回动态特性,探讨了电疲劳对其滞回行为的影响。在293-433K的温度范围和0.1-100Hz的频率范围内,表征了E-c、P-r、滞后面积、饱和极化P-s和反向开关极化P-bc与温度T或频率f的不同关系。我们的结果表明,在菱形或四方相,滞后参数和E-c随T近似线性下降。然而,在几乎整个温度范围内观察到P-r和P-s随T的异常增加,这与以前的研究相矛盾。结果表明,温度升高导致的磁畴脱钉是疲劳回复以及P-r和P-s随T增加的原因。此外,在不同的频率范围内,观察到Log和Log(f)之间存在不同的线性标度关系,这可能有助于磁畴的异相成核或热激活蠕变运动。

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