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Characterization files for the analysis of Mg-Zn nanoferrites flavonoids

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DataONE2023-12-11 更新2024-06-08 收录
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Nanosized ferrites MgxZn1-xFe2O4 (0 < x <1) was effectively synthesized using a wet ferritization method. The obtained spinel nanoparticles were then treated with flavonoids (Flv) extracted from agricultural waste of Punica granatum L. and Allium cepa L. Various characterization techniques such as FTIR, XRD, DTA-TGA, VSM, FE-SEM, TEM, EDX, and BET were utilized to analyze the surface morphology, magnetic properties, and elemental composition. The X-ray diffractograms revealed that the synthesized MgxZn1-xFe2O4 (MZFO) nanoparticles displayed a uniform cubic spinel structure, indicating the presence of a single phase. Morphological analysis revealed two distinct categories of MZFO nanoparticles: flower-shaped and plate-shaped particles. The attendance of Mg, Zn, O, Fe, and C elements in both MZFO and Flv/MZFO samples was confirmed by EDX analysis. TEM analysis further confirmed that each particle of the modified MZFO sample was a single crystal with an average particle size of 22 nm..., , , # Characterization files for the analysis of Mg-Zn nanoferrites flavonoids Nanosized ferrites Mg*x*Zn1-*x*Fe2O4 (0 < *x *<1) were effectively synthesized using a wet ferritization method. The obtained spinel nanoparticles were then treated with flavonoids (Flv) extracted from agricultural waste of *Punica granatum* L. and *Allium cepa* L. Various characterization techniques such as FTIR, XRD, DTA-TGA, VSM, FE-SEM, TEM, EDX, and BET were utilized to analyze the surface morphology, magnetic properties, and elemental composition. The X-ray diffractograms revealed that the synthesized MgxZn1-xFe2O4 (MZFO) nanoparticles displayed a uniform cubic spinel structure, indicating the presence of a single phase. Morphological analysis revealed two distinct categories of MZFO nanoparticles: flower-shaped and plate-shaped particles. The attendance of Mg, Zn, O, Fe, and C elements in both MZFO and Flv/MZFO samples was confirmed by EDX analysis. TEM analysis further confirmed that each particl...
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2023-12-12
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