Rerak Michał, Makowska Jolanta, Goryczka Tomasz, Wodecka-Duś Beata, Osińska Katarzyna, Tytko Grzegorz, Adamczyk-Habrajska Małgorzata
Institute of Materials Engineering, Faculty of Science and Technology, University of Silesia, 75 Pułku Piechoty 1A, 41-500 Chorzow, Poland.
Faculty of Automatic Control, Electronics and Computer Science, Silesian University of Technology, 44-100 Gliwice, Poland.
Materials (Basel). 2024 Oct 10;17(20):4952. doi: 10.3390/ma17204952.
This study investigates the influence of samarium (Sm) doping on the structural, microstructural, mechanical, and dielectric properties of BaBiNbO (BBN) ceramics. Using the solid-state reaction method, samples of BaBiSmNbO with varying concentrations of Sm ( = 0.01; 0.02; 0.04; 0.06; 0.08; 0.1) were prepared. Thermal analysis, microstructure characterization via SEM and EDS, X-ray diffraction, mechanical testing, and dielectric measurements were conducted. The results revealed that increasing Sm concentration led to the formation of single-phase materials with a tetragonal structure at room temperature. Mechanical properties, such as Young's modulus and stiffness, improved with Sm doping, indicating stronger atomic bonding. Dielectric properties showed that low concentrations of Sm slightly increased electrical permittivity, while higher concentrations reduced it. The presence of Sm⁺ also affected the relaxor properties, evidenced by changes in the freezing temperature and activation energy. Overall, the study concludes that samarium doping enhances the structural and functional properties of BBN ceramics, making them promising candidates for high-temperature piezoelectric and dielectric applications. The findings provide valuable insights into tailoring ceramic materials for advanced technological applications.
本研究调查了钐(Sm)掺杂对BaBiNbO(BBN)陶瓷的结构、微观结构、力学和介电性能的影响。采用固态反应法制备了不同Sm浓度( = 0.01;0.02;0.04;0.06;0.08;0.1)的BaBiSmNbO样品。进行了热分析、通过扫描电子显微镜(SEM)和能谱仪(EDS)进行微观结构表征、X射线衍射、力学测试和介电测量。结果表明,Sm浓度的增加导致在室温下形成具有四方结构的单相材料。力学性能,如杨氏模量和刚度,随着Sm掺杂而提高,表明原子键更强。介电性能表明,低浓度的Sm略微增加了介电常数,而高浓度则降低了介电常数。Sm⁺的存在也影响了弛豫特性,这通过冻结温度和活化能的变化得到证明。总体而言,该研究得出结论,钐掺杂增强了BBN陶瓷的结构和功能性能,使其成为高温压电和介电应用的有前途的候选材料。这些发现为定制用于先进技术应用的陶瓷材料提供了有价值的见解。