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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Poling effects on the structural, electrical and photoluminescence properties in Sm doped BCST piezoelectric ceramics
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Poling effects on the structural, electrical and photoluminescence properties in Sm doped BCST piezoelectric ceramics

机译:SM掺杂BCST压电陶瓷中结构,电气和光致发光性能的极化效应

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摘要

Piezoelectrics have shown great potential for controlling the piezoelectro-optical process in multifunctional materials. Electric field poling is an effective way of modulating the structure of rare earth doped piezoelectric materials, thus affecting their piezoelectro-optical interplays. Here, the (Ba0.96Ca0.04)(Ti0.90Sn0.10)O-3-0.2%Sm (BCST-Sm) lead-free ceramics exhibit high piezoelectric properties (d(33) = 450 pC N-1, k(p) = 52%) as well as strong reddish-orange photoluminescence emission (PLE). The highest piezoelectric coefficient and PLE quenching of the BCST-Sm ceramics are obtained simultaneously at a poling electric field of 20 kV cm(-1), which are related to the phase transition and the changes in lattice symmetry and domain structure. The BCST-Sm ceramics transform from the coexisting R-T phases to a single T phase by applying an electric field, where the long-range ordered large domain structure is induced. The decreased asymmetry and relaxor and the increased domain size contributed to the quenching of photoluminescence (PL) performance, while the instability of the polarization state and domain reorientation benefitted the piezoelectric response. This work demonstrates the inherent piezoelectro-optical interplays in association with various structures stimulated by the electric field and provides a physical mechanism for better understanding and designing multifunctional materials.
机译:压电测电标示出了控制多功能材料中压电光学过程的巨大潜力。电场抛光是调节稀土掺杂压电材料结构的有效方式,从而影响其压电光学相位。这里,(ba0.96ca0.04)(Ti0.90sn0.10)O-3-0.2%SM(BCST-SM)无铅陶瓷表现出高压电性能(D(33)= 450克,K. (p)= 52%)以及强烈的红橙色光致发光发射(PLE)。在20kVcm(-1)的极化电场同时获得BCST-SM陶瓷的最高压电系数和PLE淬火,其与相转变和晶格对称和域结构的变化有关。通过施加电场,BCST-SM陶瓷从共存R-T相转换为单个T相,其中诱导远程有序的大畴结构。不对称和松弛剂的降低和增加的域尺寸导致光致发光(PL)性能的淬火,而偏振态和域重新定向的不稳定性受益于压电响应。这项工作展示了与电场刺激的各种结构相关联的固有压电光学相互作用,并提供了更好地理解和设计多功能材料的物理机制。

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