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Nanoscale phase quantification in lead-free (Bi1/2Na1/2)TiO3-BaTiO3 relaxor ferroelectrics by means of Na 23 NMR

机译:Na 23 NMR在无铅(Bi1 / 2Na1 / 2)TiO3-BaTiO3弛豫铁电体中进行纳米级相定量

摘要

We address the unsolved question on the structure of relaxor ferroelectrics at the atomic level by characterizing lead-free piezoceramic solid solutions (100-x)(Bi1/2Na1/2)TiO3-xBaTiO3 (BNT-xBT) (for x=1,4,6, and 15). Based on the relative intensity between spectral components in quadrupolar perturbed Na23 nuclear magnetic resonance, we present direct evidence of the coexistence of cubic and polar local symmetries in these relaxor ferroelectrics. In addition, we demonstrate how the cubic phase vanishes whenever a ferroelectric state is induced, either by field cooling or changing the dopant amount, supporting the relation between this cubic phase and the relaxor state.
机译:通过表征无铅压电陶瓷固溶体(100-x)(Bi1 / 2Na1 / 2)TiO3-xBaTiO3(BNT-xBT)(对于x = 1,4),我们解决了原子级弛豫铁电体结构上尚未解决的问题,6和15)。基于四极扰动的Na23核磁共振波谱分量之间的相对强度,我们提供了这些弛豫铁电体中立方和极性局部对称性共存的直接证据。此外,我们演示了无论何时通过磁场冷却或改变掺杂剂量来感应铁电态时,立方相如何消失,从而支持了该立方相与弛豫态之间的关系。

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