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Evaluation via multivariate techniques of scale factor variability in the rietveld method applied to quantitative phase analysis with X ray powder diffraction

机译:通过rietveld方法中比例因子可变性的多元技术进行评估,该方法适用于X射线粉末衍射定量相分析

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The present work uses multivariate statistical analysis as a form of establishing the main sources of error in the Quantitative Phase Analysis (QPA) using the Rietveld method. The quantitative determination of crystalline phases using x ray powder diffraction is a complex measurement process whose results are influenced by several factors. Ternary mixtures of Al2O3, MgO and NiO were prepared under controlled conditions and the diffractions were obtained using the Bragg-Brentano geometric arrangement. It was possible to establish four sources of critical variations: the experimental absorption and the scale factor of NiO, which is the phase with the greatest linear absorption coefficient of the ternary mixture; the instrumental characteristics represented by mechanical errors of the goniometer and sample displacement; the other two phases (Al2O3 and MgO); and the temperature and relative humidity of the air in the laboratory. The error sources excessively impair the QPA with the Rietveld method. Therefore it becomes necessary to control them during the measurement procedure.
机译:本工作使用多元统计分析作为使用Rietveld方法建立定量相分析(QPA)中主要误差源的一种形式。使用X射线粉末衍射定量测定结晶相是一个复杂的测量过程,其结果受多个因素影响。在受控条件下制备Al2O3,MgO和NiO的三元混合物,并使用Bragg-Brentano几何排列获得衍射。可以建立四个关键变化的来源:实验吸收率和NiO的比例因子,NiO是三元混合物线性吸收系数最大的相。测角仪的机械误差和样品位移所代表的仪器特性;其他两相(Al2O3和MgO);以及实验室中空气的温度和相对湿度。错误源严重地损害了Rietveld方法的QPA。因此,有必要在测量过程中对其进行控制。

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