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首页> 外文期刊>Journal of the European Ceramic Society >Electric field induced phase transition and accompanying giant poling strain in lead-free NaNbO3-BaZrO3 ceramics
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Electric field induced phase transition and accompanying giant poling strain in lead-free NaNbO3-BaZrO3 ceramics

机译:无铅纳米3-Bazro3陶瓷中的电场诱导相位过渡和伴随巨型抛光菌株

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摘要

A series of phase transitions in (1-x)NaNbO3-xBaZrO(3) ((1-x)NN-xBZ) ceramics was observed from antiferroelectric orthorhombic phase to ferroelectric orthorhombic phase and finally into ferroelectric rhombohedral phase with increasing x. An electric field induced irreversible phase transition was found in different compositions, irrespective of their virgin phase structures. Particularly, an antiferroelectric orthorhombic phase is irreversibly transformed into a ferroelectric monoclinic phase within 0.02 = x = 0.05, leading to a giant poling strain of similar to 0.58%. This is much larger than that observed in ferroelectric orthorhombic (0.06 = x = 0.07) and rhombohedral phases (0.08 = x = 0.11) suffering from an irreversible ferroelectric-ferroelectric (monoclinic) phase transition. The synchrotron x-ray diffraction and the measurement of longitudinal and transverse strains suggest that this irreversible phase transition should involve not only a distinct volume expansion, but also an obvious lattice elongation. The present study demonstrates a unique nature of the composition and field dependent phase stability and an underlying mechanism of giant poling strains in NN-BZ ceramics.
机译:在(1-x)NaNbO3-xBaZrO(3)((1-x)NN-xBZ)陶瓷中观察到一系列相变,随着x的增加,从反铁电正交相到铁电正交相,最后到铁电菱形相。在不同的组分中发现了电场诱导的不可逆相变,而与它们的原始相结构无关。特别地,反铁电正交相在0.02;=x;=0.05,导致类似于0.58%的巨大极化应变。这比铁电正交相(0.06;=x;=0.07)和菱面体相(0.08;=x;=0.11)中观察到的不可逆铁电-铁电(单斜)相变要大得多。同步辐射x射线衍射和纵向和横向应变的测量表明,这种不可逆相变不仅涉及明显的体积膨胀,而且还涉及明显的晶格伸长。本研究证明了NN-BZ陶瓷的组成和场依赖性相稳定性的独特性质,以及巨极化应变的潜在机制。

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