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Dielectric, structural and ferroelectric properties of strontium borate glasses containing nanocrystalline bismuth vanadate

机译:含纳米晶钒酸铋的硼酸锶玻璃的介电,结构和铁电性能

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摘要

Glasses of the composition (100-x) SrB4O7 (SBO)-x Bi2VO5.5 (BiV) (0 less than or equal to x less than or equal to 70) were fabricated by the splat quenching technique. The evolution of nanocrystallization of bismuth vanadate in the system 50 SBO-50 BiV (in mol%) was accomplished via controlled heat-treatment (in the temperature range 470-820 K) of the as-quenched glasses. Differential thermal analyses were performed to assess the glass transition (T-g) and crystallization temperatures (T-cr). X-Ray powder diffraction studies (XRD) confirmed the as-quenched samples to be amorphous. High resolution transmission electron microscopic (HRTEM) studies corroborated the XRD studies and indicated the BiV crystallite size in 720 K heat-treated composites to be around 15 nm. The dielectric constant (epsilon (r)) and the dielectric loss (D) were measured in the frequency range 100 Hz-10 MHz at different temperatures (300-900 K). The dielectric constant of the glass nanocomposite (GNC) under study was predicted using various dielectric 2mixture formulae at 300 K and found to be in close agreement with that obtained using the Maxwell and logarithmic mixture rules. The samples that were heat-treated at two different temperatures, 720 and 820 K, exhibited broad dielectric anomalies in the vicinity of ferroelectric-to-paraelectric transition temperature of the parent BiV ceramics. Diffuseness of the observed transitions were estimated using Curie-Weiss formalism. The P vs. E hysteresis loops exhibited by GNC samples at high temperatures (670-760 K) demonstrate their ferroelectric nature. [References: 25]
机译:通过短板淬火技术制造了组成为(100-x)SrB4O7(SBO)-x Bi2VO5.5(BiV)(0小于等于x小于等于70)的玻璃。通过淬火玻璃的受控热处理(在470-820 K的温度范围内),在系统50 SBO-50 BiV(摩尔%)中实现了钒酸铋纳米晶的演化。进行差热分析以评估玻璃化转变温度(T-g)和结晶温度(T-cr)。 X射线粉末衍射研究(XRD)确认淬火后的样品为非晶态。高分辨率透射电子显微镜(HRTEM)研究证实了XRD研究,并表明在720 K热处理的复合材料中BiV晶粒尺寸约为15 nm。在不同温度(300-900K)下在100Hz-10MHz的频率范围内测量介电常数(ε(r))和介电损耗(D)。使用各种介电常数2混合公式在300 K下预测了所研究的玻璃纳米复合材料(GNC)的介电常数,发现该常数与使用麦克斯韦和对数混合规则获得的介电常数非常一致。在两个不同的温度720和820 K下进行热处理的样品在母体BiV陶瓷的铁电至顺电转变温度附近表现出广泛的介电异常。使用居里-魏斯形式主义估计观察到的过渡的扩散性。 GNC样品在高温(670-760 K)下表现出的P对E磁滞回线证明了其铁电性质。 [参考:25]

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