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Magnetic studies on spinel ferrite nanoparticles and bulk samples synthesized by citrate combustion route

机译:铜铁氧体纳米粒子和柠檬酸燃烧路径合成的散装样品的磁性研究

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We report structural, microstructural and magnetic studies of ZnFe_2O_4, MnFe_2O_4 and mixed Mn-Ni-Zn ferrites in nanoparticles and bulk forms. Polycrystalline samples were prepared by citrate combustion synthesis, which resulted in homogeneous and nanograin powders. Particle sizes estimated from the XRD and SEM were found to be below 100 nm for the calcined powders (600°C) and above 300 nm range for the sintered (1200°C) samples. Substitution of Ni and Zn for Mn enhanced the saturation magnetization and coercivity, because of the redistribution between octahedral and tetrahedral iron sites. Curie temperature were found to be higher for the calcined powders as compared to corresponding sintered samples due to particle size effects.
机译:我们在纳米颗粒和散装形式中报告ZnFe_2O_4,MNFE_2O_4和混合MN-Ni-Zn铁氧体的结构,微观结构和磁性研究。 通过柠檬酸燃烧合成制备多晶样品,从而导致均匀和纳米粉末。 从XRD和SEM估计的粒度低于100nm的煅烧粉末(600℃)和烧结(1200℃)样品的300nm以上。 Ni和Zn的替代为Mn增强了饱和磁化强度和矫顽力,因为八面体和四面体铁位点之间的再分配。 与粒径效应引起的相应烧结样品相比,煅烧粉末的发现居里温度较高。

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