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La3+ - induced (micro)structural changes and origin of the relaxor-like phase transition in ferroelectric lead barium niobate electroceramics

机译:La3 +诱导的铌酸钡钡铁电陶瓷的(微)结构变化和弛豫样相变的起源

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摘要

Lead barium niobate (Pb1-xBaxNb2O6, PBN) ferroelectric materials have been and are the subject of numerous studies in literature due to their potential for wide-ranging applications in the electronic industry. In this work, La3+-doped Pb0.56Ba0.44Nb2O6 (PBN44) electroceramics were prepared and investigated in terms of X-ray diffraction, scanning electron microscopy, thermal spectra of dielectric permittivity, Curie-Weiss law, and hysteresis loop characteristics. It was noted that La3+ doping favors the formation of orthorhombic mm2 phase in PBN44, which originally shows only the tetragonal 4mm symmetryrelated phase. In particular, the PBN44 material with 1 wt% La2O3 displays (micro)structural characteristics and dielectric properties similar to those from PBN compositions lying within their morphotropic phase boundary region. Our results also show that La3+ is able to promote a change of the ferroelectric to paraelectric phase transition appearance of PBN44 from pseudo-normal to really diffuse. However, conversion to a diffuse plus relaxor transition behavior reveals directly linked to incommensurate superstructures present and dielectrically-active in PBN materials toward low temperatures, with an intrinsically frequency-dispersive dielectric response. This statement is also supported by observation of hysteresis loops showing a transformation trend to pseudo-slim-like, even in the normal-like ferroelectrics, when moving into the temperature region of incommensuration manifestation.
机译:铌酸铅钡(Pb1-xBaxNb2O6,PBN)铁电材料由于在电子工业中的广泛应用潜力而一直是并且正在成为许多文献研究的主题。在这项工作中,制备了La3 +掺杂的Pb0.56Ba0.44Nb2O6(PBN44)电陶瓷,并通过X射线衍射,扫描电子显微镜,介电常数的热谱,居里-魏斯定律和磁滞回线特性进行了研究。值得注意的是,La3 +掺杂有利于PBN44中正交晶mm2相的形成,该相最初仅显示与4mm对称性有关的四方晶。特别地,具有1重量%的La 2 O 3的PBN44材料表现出(微)结构特征和介电性质,类似于来自处于其同质相边界区域内的PBN组合物的那些。我们的结果还表明,La3 +能够促进PBN44的铁电相变到顺电相变,从伪正态转变为真正扩散。然而,向扩散加弛豫转变行为的转化揭示出,它与存在于PBN材料中的不相称的上部结构直接相关,并且朝着低温具有PBD材料中的介电活性,具有固有的频散介电响应。观察到的磁滞回线也支持了这一说法,当磁滞回线进入温度不均表现的温度区域时,磁滞回线会显示出向伪细长状转变的趋势,即使在正常的铁电体中也是如此。

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