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Studies Of Structural, Dielectric And Electrical Properties Of A/B Site Modified (Na0.5bi0.5)Tio3 Ceramic Oxides udud

机译:A / B现场修饰的(Na0.5bi0.5)Tio3陶瓷氧化物的结构,介电和电性能的研究 ud ud

摘要

In recent years, there is an urgent need for the development of lead-free alternative ferroelectrics to replace the most dominant lead-based ferroelectrics (e.g., Lead zirconate titanate (PZT)) due to the toxicity of lead. Sodium bismuth titanate (Na0.5Bi0.5)TiO3 (NBT) based erroelectrics are supposed to be the future materials for solid state electronics devices because of their relatively high Curie temperatures and high remnant polarization among the non-lead ferroelectrics. The present work deals with the synthesis and analysis of the electrical properties of NBT based lead free ferroelectric materials with suitable substitution at A and B sites.In this context, the systematic studies of lanthanum (La) / yttrium (Y) and zirconium (Zr) substitution at A and B sites of NBT have been undertaken through structural, dielectric and impedance spectroscopy studies. NBT and modified NBT samples were synthesized by conventional solid state reaction route. The desired phase and crystal structure formation of the synthesized materials were confirmed by X-ray diffraction (XRD) analysis. The preliminary XRD analysis of the material revealed rhombohedral crystal system with hexagonal axis. The scanning electron micrographs (SEM) were taken at different magnifications to visualize the microstructure (grain size, grain distribution, voids etc.) of the materials. The appearance of the characteristic peak of BO6 octahedra in FTIR spectrum confirms the formation of perovskite phase.ud
机译:近年来,由于铅的毒性,迫切需要开发无铅替代铁电体来替代最主要的基于铅的铁电体(例如锆钛酸铅(PZT))。钛酸铋钠(Na0.5Bi0.5)TiO3(NBT)基的电电材料被认为是固态电子设备的未来材料,因为它们的居里温度相对较高,并且在无铅铁电材料中的残留极化较高。目前的工作是合成和分析NBT基无铅铁电材料的电学性质,并在A和B位进行适当的取代。在此背景下,对镧(La)/钇(Y)和锆(Zr)进行了系统研究。 )已通过结构,介电和阻抗谱研究对NBT的A和B位置进行了取代。通过常规的固态反应路线合成了NBT和改性的NBT样品。通过X射线衍射(XRD)分析确认了合成材料的所需相和晶体结构形成。对该材料进行的初步XRD分析表明,六边形的菱面体晶体系统。在不同的放大倍数下拍摄扫描电子显微照片(SEM),以可视化材料的微观结构(晶粒尺寸,晶粒分布,空隙等)。 FTIR光谱中BO6八面体特征峰的出现证实了钙钛矿相的形成。

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    Barick Barun Kumar;

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  • 年度 2011
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