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首页> 外文期刊>Journal of nanomaterials >Microstructure and Superparamagnetic Properties of Mg-Ni-Cd Ferrites Nanoparticles
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Microstructure and Superparamagnetic Properties of Mg-Ni-Cd Ferrites Nanoparticles

机译:Mg-Ni-Cd铁氧体纳米粒子的微观结构和超顺磁性

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摘要

Magnesium substituted nickel cadmium ferrite nanoparticles MgxNi0.6−xCd0.4Fe2O4(fromx= 0 to 0.6 with step 0.1) have been synthesized by the chemical coprecipitation route. X-ray diffraction (XRD) and infrared spectroscopy (FTIR) revealed that the obtained powders have a single phase of cubic spinel structure. The crystallite sizes calculated from XRD data have been confirmed using transmission electron microscopy (TEM) showing that the powders are consisting of nanosized grains with an average size range 5–1.5 nm. Magnetic hysteresis loops were traced at 6.5 K as well as at room temperature using VSM. It was found that, due to the Mg2+-ions substitution, the values of saturation magnetizationMsfor the investigated samples were decreased, whereas the coercive fieldHcincreased. Both zero field cooling (ZFC) and field cooling (FC) curves are measured in the temperature range (6.5–350 K) and the values of blocking temperatureTBwere determined. No considerable variation in the values ofTBwas observed with increasing Mg-content, whereas the values of the effective anisotropy constantKeffwere increased.
机译:通过化学共沉淀途径合成了镁取代的镍镉铁氧体纳米颗粒MgxNi0.6-xCd0.4Fe2O4(从x = 0到0.6,步长为0.1)。 X射线衍射(XRD)和红外光谱(FTIR)表明,所获得的粉末具有立方尖晶石结构的单相。根据XRD数据计算得出的微晶尺寸已通过透射电子显微镜(TEM)进行了证实,表明粉末由平均尺寸范围为5–1.5?nm的纳米晶粒组成。使用VSM在6.5 K以及室温下追踪磁滞回线。结果发现,由于Mg2 +离子的取代,所研究样品的饱和磁化强度Ms值减小,而矫顽场增大。零场冷却(ZFC)和场冷却(FC)曲线均在温度范围(6.5–350 K)下测量,并确定了阻塞温度TB的值。随着镁含量的增加,TB值没有明显变化,而有效各向异性常数Keff的值却增加了。

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