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Nanosize ferrites obtained by ball milling: Crystal structure, cation distribution, size-strain analysis and Raman investigations

机译:通过球磨获得的纳米铁氧体:晶体结构,阳离子分布,尺寸应变分析和拉曼研究

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Spinels samples Fe2.85Y0.15O4 (S1) and Fe2.55In0.45O4 (S2), such as Fe3O4 + gamma-Fe2O3 (S3) were obtained by ball milling. TEM micrograph as well as XRPD line broadening analyses show nanosize nature of the ferrite powders. Cation distribution, found by Rietveld refinement of the site occupancies, indicate Y3+ ions presence at 16d sites in Fe2.85Y0.15O4, and a random In3+ ions distribution on both 8a and 16d sites in Fe2.55In0.45O4 (space group Fd (3) over barm). From the XRPD line broadening analysis crystallite size and strain values were determined. The crystallite size and strain anisotropy is significant, especially for Fe2.85Y0.15O4 and Fe2.55In0.45O4. This result is discussed regarding the influence of the cation substitutions. The Raman signature confirms the spinel structure and the homogeneity of the particles. (c) 2006 Elsevier SAS. All rights reserved.
机译:通过球磨获得尖晶石样品Fe2.85Y0.15O4(S1)和Fe2.55In0.45O4(S2),例如Fe3O4 +γ-Fe2O3(S3)。 TEM显微照片以及XRPD线展宽分析表明,铁氧体粉末具有纳米级的性质。通过Rietveld对位点占据的精细化发现,发现阳离子分布表明Y3 +离子存在于Fe2.85Y0.15O4的16d位点上,并且In3 +离子随机分布于Fe2.55In0.45O4的8a和16d位点上(空间群Fd(3 )超过barm)。从XRPD线加宽分析,确定了微晶尺寸和应变值。晶粒尺寸和应变各向异性是显着的,特别是对于Fe2.85Y0.15O4和Fe2.55In0.45O4。讨论了有关阳离子取代的影响的结果。拉曼特征证实了尖晶石的结构和颗粒的均匀性。 (c)2006年Elsevier SAS。版权所有。

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