Rietveld refinement of Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005 composite synthesized by coprecipitation method

Ankita, Sunil Rohilla
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引用次数: 3

Abstract

Here we report the synthesis of Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005 (chromite) using a wet chemical approach i.e Coprecipitation method. The prepared powdered composite was structurally characterized through X-ray diffraction analysis. The XRD data was refined by MAUD and Fullprof suit software. Rietveld analysis based on structure and microstructure refinement has been used for precise determination of many microstructural parameters such as Wyckoff positions, intensity, Miller indices value, and interatomic distance. X-ray diffraction and Rietveld analysis shows that prepared sample of composites has a single cubic phase of chromite with space group Fd-3m. R-Factor (Profile R factor (Rp), Weighted R Factor (Rwp), Expected values (Rexp), Bragg R Factor (RB), Rf-Factor), goodness fit factor(χ2), have been calculated. The lower values of profile parameters such as Rp, Rwp, RB,Rexp,Rf, χ2 indicated that the calculated diffraction pattern is in fair agreement with observed pattern. Some of the applications of Chromite have also been highlighted.Here we report the synthesis of Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005 (chromite) using a wet chemical approach i.e Coprecipitation method. The prepared powdered composite was structurally characterized through X-ray diffraction analysis. The XRD data was refined by MAUD and Fullprof suit software. Rietveld analysis based on structure and microstructure refinement has been used for precise determination of many microstructural parameters such as Wyckoff positions, intensity, Miller indices value, and interatomic distance. X-ray diffraction and Rietveld analysis shows that prepared sample of composites has a single cubic phase of chromite with space group Fd-3m. R-Factor (Profile R factor (Rp), Weighted R Factor (Rwp), Expected values (Rexp), Bragg R Factor (RB), Rf-Factor), goodness fit factor(χ2), have been calculated. The lower values of profile parameters such as Rp, Rwp, RB,Rexp,Rf, χ2 indicated that the calculated diffraction pattern is in fair agreement with observed patter...
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共沉淀法合成Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005复合材料的Rietveld细化
本文报道了用湿化学共沉淀法合成Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005(铬铁矿)的方法。通过x射线衍射分析对制备的粉末复合材料进行了结构表征。利用MAUD和Fullprof软件对XRD数据进行精化处理。基于结构和微观结构精细化的Rietveld分析已被用于精确测定许多微观结构参数,如Wyckoff位置、强度、Miller指数值和原子间距离。x射线衍射和Rietveld分析表明,制备的复合材料样品具有空间基团Fd-3m的单立方相铬铁矿。计算R因子(Profile R因子(Rp)、Weighted R因子(Rwp)、期望值(Rexp)、Bragg R因子(RB)、rf因子(Rf-Factor)、优度拟合因子(χ2)。Rp、Rwp、RB、Rexp、Rf、χ2等参数值较低,表明计算的衍射图样与观测图样吻合较好。介绍了铬铁矿的一些应用。本文报道了用湿化学共沉淀法合成Al0.492Cr1.133 Fe0.78 Mg0.499 Ni0.007 O4 Si0.001 Ti0.082 Zn0.005(铬铁矿)的方法。通过x射线衍射分析对制备的粉末复合材料进行了结构表征。利用MAUD和Fullprof软件对XRD数据进行精化处理。基于结构和微观结构精细化的Rietveld分析已被用于精确测定许多微观结构参数,如Wyckoff位置、强度、Miller指数值和原子间距离。x射线衍射和Rietveld分析表明,制备的复合材料样品具有空间基团Fd-3m的单立方相铬铁矿。计算R因子(Profile R因子(Rp)、Weighted R因子(Rwp)、期望值(Rexp)、Bragg R因子(RB)、rf因子(Rf-Factor)、优度拟合因子(χ2)。剖面参数Rp、Rwp、RB、Rexp、Rf、χ2的较低值表明,计算的衍射图样与观测图样基本吻合。
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