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An intermediate metastable ferroelectric state induced giant functional responses in Bi0.5Na0.5TiO3 ceramics

机译:Bi0.5na0.5tio3陶瓷中的中间亚稳态铁电状态诱导巨型功能反应

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摘要

The local heterogeneities and phase transition in the ferroelectric Bi0.5Na0.5TiO3 have a profound impact on the electrical properties. Herein, we have illustrated that the high functional properties involving domain switching and a heterogeneity dependent emerging phase transition are closely associated with intermediate local heterogeneity by comparing the as-prepared and field cycled BNT ceramics. A synergistic role can be triggered by the intermediate metastable ferroelectric state in view of this heterogeneity and associated phase transition with an applied electric field in the freshly prepared specimens. Multiple giant functional responses of colossal piezoelectricity, large electroresistance and dielectric tunability were achieved due to the significant increases in polarization orientations highly related to the metastable ferroelectric state of the localized structure. Particularly, record-setting piezoelectricity with d(33)* = 17 816 pm V-1 was obtained in the field-induced collaborative interaction. Discovering the catalytic effect of the intermediate metastable ferroelectric state will provide unique opportunities for the design of high-performance materials.
机译:铁电BI0.5NA0.5TiO3中的局部异质性和相变对电性能产生深远的影响。在此,我们示出了涉及结构域切换和异质性的高功能性质,通过比较用制备的和现场循环的BNT陶瓷通过比较和现场循环的BNT陶瓷与中间局部异质性密切相关。考虑到这种异质性和相关的相位过渡,通过在新鲜制备的标本中的施加电场的相关相转变,可以通过中间亚稳态铁电状态触发协同作用。由于与局部结构的亚稳态铁电源高度相关的偏振取向显着增加,实现了多种巨大的功能响应。特别地,在现场诱导的协作相互作用中获得了具有D(33)* = 17 816 816 816 816 816 816的记录压电性。发现中间亚稳态铁电状态的催化作用将为高性能材料设计提供独特的机会。

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