Effects on the dielectric and ferroelectric properties of an O2 atmosphere during sintering of Pb(Fe0.5Nb0.5)O3 ceramics

Joan Farre-Gisbert, Reynaldo Font-Hernandez, Lourdes Mestres-Vila, M. Martínez-Sarrión, O. Herrera
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Abstract

Multifunctional materials such as the single phase compound Pb(Fe0.5Nb0.5)O3 (PFN), where ferroelectric and magnetic order coexist, are very promising and have great interest from the academic and technological points of view. However, as was established in previous work, the occurrence of Fe2+ and oxygen vacancies originated during the sintering process increase electrical conductivity, dielectric loss, and space-charge accumulation at the grain boundary, all of them detrimental to optimal device performance.1-3 Here, a report on the effects of an O2 atmosphere during the calcination and sintering stages of the preparation process using the traditional ceramic method is presented. A comparative study of structural, morphological and small signal dielectric frequency-temperature response study, where appropriate microstructural and equivalent circuit models were established using the impedance spectroscopy technique is presented. Big differences in the hysteret!ic behavior of the samples prepared in the presence and without the O2 atmosphere were observed and are discussed. The O2 atmosphere improves the dielectric and ferroelectric properties largely, in comparison with previous reports on PFN ceramics where other methods such as sintering in air, Pb atmospheres or fabricated from sol-gel-derived powders were used. 1 O. Raymond et al, J. Appl. Phys. 97, 084107 (2005). 2 O. Raymond et al. J. Appl. Phys. 97, 084108 (2005). 3 O. Raymond et al. J. Appl. Phys. 99, 124101 (2006). This work was partially supported by DGAPA-UNAM Project IN109305-3 and CoNaCyT Projects No. 47714-F and 49986-F. The authors thank E. Aparicio, P. Casillas, I. Gradilla, and J. Peralta for their technical assistance.
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O2气氛对Pb(Fe0.5Nb0.5)O3陶瓷烧结过程中介电性能和铁电性能的影响
以铁电序与磁序共存的单相化合物Pb(Fe0.5Nb0.5)O3 (PFN)为代表的多功能材料具有广阔的应用前景和广泛的技术应用前景。然而,正如之前的工作所确定的那样,在烧结过程中产生的Fe2+和氧空位增加了电导率、介电损耗和晶界的空间电荷积累,所有这些都不利于器件的最佳性能。1-3本文介绍了使用传统陶瓷方法制备过程中,在煅烧和烧结阶段O2气氛的影响。利用阻抗谱技术建立了相应的微结构和等效电路模型,对结构、形态和小信号介质频率-温度响应进行了对比研究。歇斯底里有很大的不同!对制备的样品在有氧气氛和无氧气氛下的ic行为进行了观察和讨论。与之前报道的PFN陶瓷相比,O2气氛大大提高了介电和铁电性能,其中其他方法如在空气中烧结,铅气氛或由溶胶-凝胶衍生的粉末制备。[1]李建平等。物理学报,97,084(2005)。[2]雷蒙德等。j:。物理学报,97,084108(2005)。3雷蒙德等。j:。物理学报,1999,12(1)(2006)。这项工作得到了DGAPA-UNAM项目IN109305-3和CoNaCyT项目No. 47714-F和49986-F的部分支持。作者感谢E. Aparicio、P. Casillas、I. Gradilla和J. Peralta提供的技术援助。
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