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Observation of multiple dielectric relaxations in BaTiO3-Bi(Li1/3Ti2/3)O3 ceramics

机译:BaTiO3-Bi(Li1 / 3Ti2 / 3)O3陶瓷的多重介电弛豫的观察

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摘要

Dense (1-x)BaTiO3-xBi(Li1/3Ti2/3)O3 ceramics were fabricated by the solid state reaction route. Powder X-ray diffraction analysis analyses revealed an increase in the unit cell volume with increasing x and a change on the average crystal structure from tetragonal (space group P4mm) to cubic (Pm3 ̅mPm-3m) at x> 0.10. Raman spectroscopy analyses corroborated a change of symmetry, but also showed the local structure for x> 0.10 to be inconsistent with the centrosymmetric (Pm3 ̅m) space group Pm-3m. The dielectric measurements revealed for the first time, to our knowledge, a double relaxor behaviour in a BaTiO3-based solid solution. Basically, with increasing x, the sharp ferroelectric anomaly at the Curie temperature (Tc) shifts towards lower temperatures until a relaxor-type response is observed, but simultaneously, another relaxation emerges above Tc. The first arises from poor coupling between polar nanoregions, whereas the later obeys the Arrhenius Law and may be associated either with a defect-dipole reorientation or a Skanavi-type mechanism.
机译:通过固态反应路线制备了致密的(1-x)BaTiO3-xBi(Li1 / 3Ti2 / 3)O3陶瓷。粉末X射线衍射分析表明x大于0.10时,单位晶胞体积随x的增加而增加,并且平均晶体结构从四边形(空间群P4mm)变为立方(Pm3 xmPm-3m)。拉曼光谱分析证实了对称性的变化,但也表明x> 0.10的局部结构与中心对称(Pm3̅m)空间群Pm-3m不相容。据我们所知,介电测量首次揭示了在BaTiO3基固溶体中双重弛豫行为。基本上,随着x的增加,居里温度(Tc)处的尖锐铁电异常会向更低的温度移动,直到观察到弛豫型响应为止,但同时,在Tc之上出现另一个弛豫。第一个起因于极性纳米区域之间的不良耦合,而第二个则遵循阿伦尼乌斯定律,并且可能与缺陷偶极子重新定向或Skanavi型机制有关。

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