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Ferroelectromagnetic Properties of PbFe1/2Nb1/2O3 (PFN) Material Synthesized by Chemical-Wet Technology

机译:化学湿法合成PbFe1 / 2Nb1 / 2O3(PFN)材料的铁电磁性能

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摘要

In this work, PbFe1/2Nb1/2O3 (PFN) ceramic samples synthesized by chemically wet method (precipitation from the solution) were obtained. Due to the tendency to form powder agglomerates, the synthesized powder was subjected to ultrasound. The sintering was carried out under various technological conditions, mainly through controlling the sintering temperature. -X-ray powder-diffraction (XRD), scanning electron microscope (SEM) microstructure analysis, as well as the examinations of dielectric, ferroelectric, and magnetic properties of the PFN ceramics were carried out. Studies have shown that hard ceramic agglomerates can be partially minimized by ultrasound. Due to this treatment, closed porosity decreases, and the ceramic samples have a higher density. Optimization and improvement of the technological process of the PFN material extends the possibility of its use for the preparation of multiferroic composites or multicomponent solid solutions based on PFN. Such materials with functional properties find applications in microelectronic applications, e.g., in systems integrating ferroelectric and magnetic properties in one device. The optimal synthesis conditions of PFN ceramics were determined to be 1050 °C/2 h.
机译:在这项工作中,获得了通过化学湿法(从溶液中沉淀)合成的PbFe1 / 2Nb1 / 2O3(PFN)陶瓷样品。由于易于形成粉末团块,因此将合成粉末进行超声波处理。烧结是在各种技术条件下进行的,主要是通过控制烧结温度。进行了X射线粉末衍射(XRD),扫描电子显微镜(SEM)的微观结构分析以及PFN陶瓷的介电,铁电和磁性能检查。研究表明,超声可以使硬质陶瓷附聚物部分减少。由于这种处理,封闭的孔隙率降低,并且陶瓷样品具有更高的密度。 PFN材料工艺过程的优化和改进扩展了其用于制备基于PFN的多铁复合材料或多组分固溶体的可能性。具有功能特性的这种材料可用于微电子应用,例如,在一个装置中集成铁电和磁特性的系统。 PFN陶瓷的最佳合成条件确定为1050°C / 2 h。

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