X-Ray fluorescence analysis of paraniobate based ceramics of composition Y3–xYbxNbO7

A. A. Arkhipenko, G. E. Marina, V. B. Baranovskaia, M. A. Ryumin
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Abstract

A two-stage technique for X-ray fluorescence analysis of ceramic samples of composition Y3–xYbxNbO7 (where x = 0 – 3) has been developed. At the first stage, using the method of fundamental parameters (FPM), a rapid semi-quantitative analysis of ceramic samples and products of intermediate synthesis was carried out to determine their preliminary composition. At the second stage, the quantitative composition of the samples was determined using the constructed calibration dependencies. To construct calibration dependencies a series of reference samples containing 3.16 – 56.55% Y, 8.78 – 71.0% Yb, and 12.83 – 19.70% Nb was synthesized using a method similar to that used for preparation of the ceramic samples under study. Analytical lines of elements free from spectral overlaps and XRF conditions (current and voltage of an X-ray tube, exposure time, method of taking into account the background near the analytical line) were selected. The relative standard deviation of the results of Y, Yb, and Nb determination in ceramic samples did not exceed 0.66%, the relative error was no more than 1.63%. The results obtained were compared with the calculated content of analytes in the samples of stoichiometric composition and with the results of ICP-AES analysis of real ceramic samples. The developed technique provides determination of the main components of ceramic samples and can be used for analytical control of synthesis of rare earth paraniobates.
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成分为 Y3-xYbxNbO7 的对二铌酸盐基陶瓷的 X 射线荧光分析
对 Y3-xYbxNbO7 (其中 x = 0 - 3)成分的陶瓷样品进行 X 射线荧光分析的两阶段技术已经开发出来。在第一阶段,利用基本参数法(FPM)对陶瓷样品和中间合成产物进行快速半定量分析,以确定其初步成分。第二阶段,利用构建的校准依赖关系确定样品的定量成分。为了构建校准依赖关系,采用与制备所研究的陶瓷样品类似的方法合成了一系列参考样品,其中含有 3.16 - 56.55% 的 Y、8.78 - 71.0% 的 Yb 和 12.83 - 19.70% 的 Nb。选择了无光谱重叠的元素分析线和 XRF 条件(X 射线管的电流和电压、曝光时间、考虑分析线附近背景的方法)。陶瓷样品中 Y、Yb 和 Nb 测定结果的相对标准偏差不超过 0.66%,相对误差不超过 1.63%。获得的结果与计算出的化学成分样品中分析物的含量以及实际陶瓷样品的 ICP-AES 分析结果进行了比较。所开发的技术可测定陶瓷样品中的主要成分,并可用于稀土副铌酸盐合成的分析控制。
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