Bochenek Dariusz, Brzezińska Dagmara, Niemiec Przemysław, Kozielski Lucjan
Institute of Materials Engineering, Faculty of Science and Technology, University of Silesia in Katowice, 75 Pułku Piechoty 1a, 41-500 Chorzów, Poland.
Materials (Basel). 2024 Jul 25;17(15):3666. doi: 10.3390/ma17153666.
This article presents the research results of lead-free BaLa(FeNb)O (BFNLa) ceramic materials doped with La ( = 0.00-0.06) obtained via the solid-state reaction method. The tests of the BFNLa ceramic samples included structural (X-ray), morphological (SEM, EDS, EPMA), DC electrical conductivity, and dielectric measurements. For all BFNLa ceramic samples, the X-ray tests revealed a perovskite-type cubic structure with the space group P3¯. In the case of the samples with the highest amount of lanthanum, i.e., for = 0.04 (BFN4La) and = 0.06 (BFN6La), the X-ray analysis also showed a small amount of pyrochlore LaNbO secondary phase. In the microstructure of BFNLa ceramic samples, the average grain size decreases with increasing La content, affecting their dielectric properties. The BFN ceramics show relaxation properties, diffusion phase transition, and very high permittivity at room temperature (56,750 for 1 kHz). The admixture of lanthanum diminishes the permittivity values but effectively reduces the dielectric loss and electrical conductivity of the BFNLa ceramic samples. All BFNLa samples show a Debye-like relaxation behavior at lower frequencies; the frequency dispersion of the dielectric constant becomes weaker with increasing admixtures of lanthanum. Research has shown that using an appropriate amount of lanthanum introduced to BFN can obtain high permittivity values while decreasing dielectric loss and electrical conductivity, which predisposes them to energy storage applications.
本文介绍了通过固态反应法获得的掺杂La(= 0.00 - 0.06)的无铅BaLa(FeNb)O(BFNLa)陶瓷材料的研究结果。对BFNLa陶瓷样品的测试包括结构(X射线)、形态(SEM、EDS、EPMA)、直流电导率和介电测量。对于所有BFNLa陶瓷样品,X射线测试显示为具有空间群P3¯的钙钛矿型立方结构。对于镧含量最高的样品,即 = 0.04(BFN4La)和 = 0.06(BFN6La),X射线分析还显示有少量的烧绿石LaNbO次生相。在BFNLa陶瓷样品的微观结构中,平均晶粒尺寸随La含量的增加而减小,这影响了它们的介电性能。BFN陶瓷表现出弛豫特性、扩散相变以及在室温下非常高的介电常数(1 kHz时为56,750)。镧的掺杂降低了介电常数,但有效地降低了BFNLa陶瓷样品的介电损耗和电导率。所有BFNLa样品在较低频率下表现出类似德拜的弛豫行为;随着镧掺杂量的增加,介电常数的频率色散变弱。研究表明,向BFN中引入适量的镧可以获得高介电常数,同时降低介电损耗和电导率,这使其适用于储能应用。