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Synthesis and Characterization of Intergrowth Bismuth Layered Structure Ferroelectrics in the System SrO-Bi2O3-TiO2

机译:SrO-Bi2O3-TiO2体系中共生铋层状结构铁电体的合成与表征

摘要

Intergrowth bismuth layered structure ferroelectrics (BLSFs) in the system SrO-Bi2O3-TiO2 have been investigated with an objective to improve the dielectric and ferroelectric properties of them. There are three BLSFs in this system namely Bi4Ti3O12 (BIT), SrBi4Ti4O15 (SBTi4) and Sr2Bi4Ti5O18 (SBTi5) and one stable intergrowth BLSF compound between BIT-SBTi4. All these BLSFs compounds have been synthesized through a modified oxalate route. Their phase formation behavior during synthesis has been investigated in details using TG/DSC and XRD analysis. The crystal structures of all the compounds were refined through Rietveld udanalysis to find accurate lattice parameters. Densification characteristics, microstructure uddevelopment, dielectric and ferroelectric properties of all compounds were analysed andudcorrelated with each other. The major findings were:udi. BIT-SBTi4 intergrowth compound showed an enhanced 2Pr than their individual constituent BIT and SBTi4. ii. Only a short range intergrowth structure between SBTi4-SBTi5 could be possible, which showed a broaden permittivity temperature characteristics.udiii. The remnant polarization of BIT-SBTi4intergrowth has been enhanced with Nb doping and doping helps in reducing oxygen vacancy in the ceramics.udiv. The ferroelectric properties of Nb modified BIT-SBTi4 intergrowth can be further enhanced by the La substitution for Bi in the structure, however with a disadvantage of decreased Tc. udv. Keeping the Tc unchanged, the ferroelectric property of the intergrowth can be improved by CuO addition, which helps in better densification of the ceramics.
机译:研究了SrO-Bi2O3-TiO2体系中的共生铋层状结构铁电体(BLSFs),目的是改善它们的介电和铁电性能。该系统中存在三种BLSF,分别是Bi4Ti3O12(BIT),SrBi4Ti4O15(SBTi4)和Sr2Bi4Ti5O18(SBTi5),以及BIT-SBTi4之间的一种稳定的共生BLSF化合物。所有这些BLSFs化合物都是通过修饰的草酸盐途径合成的。使用TG / DSC和XRD分析详细研究了它们在合成过程中的相形成行为。通过Rietveld分析法对所有化合物的晶体结构进行了精炼,以找到准确的晶格参数。对所有化合物的致密化特性,微观结构,发展,介电和铁电性能进行了分析和相互关联。主要发现是: udi。 BIT-SBTi4共生化合物显示出比其单独的BIT和SBTi4增强的2Pr。 ii。 SBTi4-SBTi5之间可能只有短距离的共生结构,这显示出宽的介电常数温度特性。 Nb掺杂增强了BIT-SBTi4共生的残余极化,掺杂有助于减少陶瓷中的氧空位。 Nb修饰的BIT-SBTi4共生的铁电性质可以通过在结构中用Bi取代La来进一步增强,但是具有Tc降低的缺点。 udv。保持Tc不变,可通过添加CuO来改善共生体的铁电性能,这有助于陶瓷的更好致密化。

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    Parida Geetanjali;

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