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Size-Strain Analysis of Iron-Excess Mn-Zn Ferrite Nanoparticles Using Synchrotron Diffraction and Its Correlation with Magnetic Saturation and Isoelectric pH

机译:使用同步辐射衍射及其与磁饱和度和等电性能相关性的铁过量Mn-Zn铁氧体纳米粒子的大小应变分析

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Iron-excess Mn-Zn ferrite nanoparticles were prepared by coprecipitation with sodium hydroxide (NaOH) at different concentrations (0.1, 0.2, 0.5 and 1.0 mol/L). The results of X-ray diffraction (XRD) analysis using Whole Powder Pattern Modeling (WPPM) showed that higher concentrations of NaOH promote crystallite growth and broader dispersion in crystallite sizes. Energy dispersive X-ray spectroscopy indicates that zinc loss is noticeable when [NaOH] = 0.2 mol/L. XRD revealed also a significant less-crystalline phase contribution alongside the main peaks of the nanocrystalline cubic spinel ferrite phase. The less-crystalline fraction is lower for the ferrite obtained with 0.2 mol/L of NaOH, being about 50% and more than 70% for the other samples. Despite of the less-crystalline fraction and the excess of iron, no secondary phases were detected. The Warren curves showed that the concentration of NaOH significantly influences the microstrain in the crystallites, being smaller for the sample obtained with NaOH at 0.2 mol/L. The sample prepared with this condition presented the better properties to be used as magnetic tracer in clinical diagnoses combining small mean crystallite size, low microstrain, which resulted in materials with higher magnetic saturation and high surface charge under blood pH.
机译:通过在不同浓度(0.1,0.2,0.5和1.0mol / L)以氢氧化钠(NaOH)共沉淀制备铁过量的Mn-Zn铁氧体纳米颗粒。使用全粉末图案建模(WPPM)X射线衍射(XRD)分析的结果表明,较高浓度的NaOH促进微晶尺寸的微晶生长和更广泛的分散体。能量分散X射线光谱表明当[NaOH] = 0.2mol / L时锌损失是明显的。 XRD也透露了纳米晶立方尖晶石铁氧体相的主峰的显着较小结晶相贡献。对于用0.2mol / L NaOH获得的铁素体的结晶馏分较低,对于其他样品,为约50%且大于70%。尽管结晶少馏分和过量的铁,但没有检测到二次相。沃伦曲线表明,NaOH的浓度显着地影响了微晶中的微纹状体,对于在0.2mol / L的NaOH获得的样品较小。用该条件制备的样品呈现在临床诊断中用作磁性示踪剂的更好的性能,所述临床诊断结合小平均微晶尺寸,低微陶器,导致具有较高磁饱和度和血液pH的高表面电荷的材料。

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