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Electric-Field-Induced Phase Transformation and Frequency-Dependent Behavior of Bismuth Sodium Titanate–Barium Titanate

机译:钛酸铋钠-钛酸钡的电场诱导相变和频率依赖性

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摘要

The electric field response of the lead-free solid solution (1− )Bi Na TiO – BaTiO (BNT–BT) in the higher BT composition range with = 0.12 was investigated using in situ synchrotron X-ray powder diffraction. An introduced Bi-excess non-stoichiometry caused an extended morphotropic phase boundary, leading to an unexpected fully reversible relaxor to ferroelectric (R–FE) phase transformation behavior. By varying the field frequency in a broad range from 10 up to 10 Hz, BNT–12BT showed a frequency-dependent gradual suppression of the field induced ferroelectric phase transformation in favor of the relaxor state. A frequency triggered self-heating within the sample was found and the temperature increase exponentially correlated with the field frequency. The effects of a lowered phase transformation temperature T , caused by the non-stoichiometric composition, were observed in the experimental setup of the freestanding sample. This frequency-dependent investigation of an R–FE phase transformation is unlike previous macroscopic studies, in which heat dissipating metal contacts are used.
机译:使用原位同步加速器X射线粉末衍射研究了无铅固溶体(1-)Bi Na TiO – BaTiO(BNT–BT)在较高的BT组成范围内(0.12)的电场响应。引入的双过剩非化学计量比引起了变质相边界的扩展,导致出乎意料的完全可逆的铁电(R–FE)相变行为。通过在从10 Hz到10 Hz的宽范围内改变磁场频率,BNT-12BT对磁场感应的铁电相变表现出频率依赖性的逐渐抑制,有利于弛豫态。发现样品中有一个频率触发的自热,并且温度升高与磁场频率成指数相关。在独立样品的实验装置中观察到由非化学计量组成引起的相变温度T降低的影响。这种对R–FE相变的频率依赖性研究不同于以前的宏观研究,在宏观研究中,使用了散热金属触点。

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