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Electric field-induced giant strain and photoluminescence-enhancement effect in rare-earth modified lead-free piezoelectric ceramics

机译:稀土改性无铅压电陶瓷中电场引起的大应变和光致发光增强作用

摘要

In this work, an electric field-induced giant strain response and excellent photoluminescence-enhancement effect was obtained in a rare-earth ion modified lead-free piezoelectric system. Pr3+-modified 0.93(Bi0.5Na0.5)TiO3-0.07BaTiO3 ceramics were designed and fabricated by a conventional fabrication process. The ferroelectric, dielectric, piezoelectric, and photoluminescence performances were systematically studied, and a schematic phase diagram was constructed. It was found the Pr3+ substitution induced a transition from ferroelectric a long-range order structure to a relaxor pseudocubic phase with short-range coherence structure. Around a critical composition of 0.8 mol % Pr3+, a giant reversible strain of ∼0.43% with a normalized strain Smax/Emax of up to 770 pm/V was obtained at ∼5 kV/mm. Furthermore, the in situ electric field enhanced the photoluminescence intensity by ∼40% in the proposed system. These findings have great potential for actuator and multifunctional device applications, which may also open up a range of new applications.
机译:在这项工作中,在稀土离子改性的无铅压电系统中获得了电场感应的巨大应变响应和出色的光致发光增强效果。通过常规制备方法设计和制备了Pr3 +改性的0.93(Bi0.5Na0.5)TiO3-0.07BaTiO3陶瓷。系统地研究了铁电,介电,压电和光​​致发光性能,并构建了示意性相图。发现Pr 3+取代引起从铁电长程结构到具有短程相干结构的弛豫假立方相的转变。在0.8 mol%Pr3 +的临界组成附近,在〜5 kV / mm处获得了约0.43%的巨大可逆应变,归一化应变Smax / Emax高达770 pm / V。此外,在所提出的系统中,原位电场将光致发光强度提高了约40%。这些发现对于执行器和多功能设备的应用具有巨大的潜力,这可能还会开拓一系列新的应用。

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