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Piezoelectric Ceramics of the (1 − x)Bi0.50Na0.50TiO3–xBa0.90Ca0.10TiO3 Lead-Free Solid Solution: Chemical Shift of the Morphotropic Phase Boundary a Case Study for x = 0.06

机译:(1- x)Bi0.50Na0.50TiO3–xBa0.90Ca0.10TiO3的无铅固溶体的压电陶瓷:趋同相边界的化学位移x = 0.06的案例研究

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摘要

Research and development of lead-free piezoelectric materials are still the hottest topics in the field of piezoelectricity. One of the most promising lead-free family of compounds to replace lead zirconate–titanate for actuators is that of Bi0.50Na0.50TiO3 (BNT) based solid solutions. The pseudo-binary (1 − x)Bi0.50Na0.50TiO3–xBa1 − yCayTiO3 system has been proposed for high temperature capacitors and not yet fully explored as piezoelectric material. In this work, the solid solution with x = 0.06 and y = 0.10 was obtained by two different synthesis routes: solid state and Pechini, aiming at using reduced temperatures, both in synthesis (<800 °C) and sintering (<1150 °C), while maintaining appropriated piezoelectric performance. Crystal structure, ceramic grain size, and morphology depend on the synthesis route and were analyzed by X-ray diffraction, together with scanning and transmission electron microscopy. The effects of processing and ceramic microstructure on the structural, dielectric, ferroelectric, and piezoelectric properties were discussed in terms of a shift of the Morphotropic Phase Boundary, chemically induced by the synthesis route.
机译:无铅压电材料的研究和开发仍然是压电领域最热门的话题。基于Bi0.50Na0.50TiO3(BNT)的固溶体是最有前途的替代致动器的无铅无铅化合物家族之一。拟二元(1-x)Bi0.50Na0.50TiO3–xBa1-yCayTiO3系统已被提出用于高温电容器,但尚未被完全用作压电材料。在这项工作中,通过两种不同的合成途径(固态和Pechini)获得x = 0.06和y = 0.10的固溶体,旨在在合成(<800°C)和烧结(<1150°C)中使用降低的温度。 ),同时保持适当的压电性能。晶体结构,陶瓷晶粒尺寸和形态取决于合成路线,并通过X射线衍射,扫描和透射电子显微镜进行了分析。讨论了加工和陶瓷微观结构对结构,介电,铁电和压电性能的影响,方法是通过合成路线化学诱导的相变相边界的移动。

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