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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Effect of poling on nanodomains and nanoscale structure in A-site disordered lead-free piezoelectric Na_(0.5)Bi_(0.5)TiO3-BaTiO3
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Effect of poling on nanodomains and nanoscale structure in A-site disordered lead-free piezoelectric Na_(0.5)Bi_(0.5)TiO3-BaTiO3

机译:极化对A位无序压电Na_(0.5)Bi_(0.5)TiO3-BaTiO3纳米域和纳米尺度结构的影响

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摘要

This paper establishes the nanoscale poling mechanism operating in A-site disordered lead-free piezoelectric ceramics. Nanoscale domain maps and quantitative structural changes were obtained by deploying high-resolution transmission electron microscopy, dielectric spectroscopy, Raman spectroscopy and neutron scattering. Based on these results a microscopic model is proposed that provides insight into the E-field induced structural transformation. The stripe-like nanodomains in the unpoled system transformed into lamellar tetragonal domains with a reduced degree of displacement disorder during poling. It is proposed that the synergic effect of change in octahedral tilt disorder and cation displacement disorder leads to this transformation under an E-field. The criterion for achieving superior functional response includes stabilization of the long range order and reduction in the tilt disorder through compositional adjustments. Understanding of the poling mechanism in lead-free piezoelectric materials has been mostly limited to the behavior of domains under an applied field. However, this work provides an in-depth understanding of the changes in the local structure along with domain morphology under an applied field.
机译:本文建立了在A位无序无铅压电陶瓷中运行的纳米级极化机理。通过部署高分辨率透射电子显微镜,介电谱,拉曼光谱和中子散射,获得了纳米级畴图和定量结构变化。基于这些结果,提出了微观模型,该模型提供了对电场诱导的结构转变的洞察力。未极化系统中的条状纳米域转变为层状四边形域,极化过程中位移紊乱程度降低。提出八面体倾斜障碍和阳离子置换障碍的变化的协同作用导致在电场下这种转变。实现出色的功能响应的标准包括稳定长程顺序以及通过成分调整来降低倾斜度。对无铅压电材料中极化机制的理解主要限于在应用领域下畴的行为。但是,这项工作提供了对在应用领域下局部结构的变化以及域形态的深入了解。

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