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Investigation on the structures and magnetic properties of carbon or nitrogen doped cobalt ferrite nanoparticles

机译:碳氮掺杂钴铁氧体纳米粒子的结构与磁性

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摘要

Carbon or nitrogen doped cobalt ferrite nanoparticles were synthesized in the air by a facile calcination process. X-ray diffraction, mapping, X-ray photoelectron spectroscopy, and mössbauer spectra results indicate that the nonmetal elements as the interstitial one are doped into cobalt ferrite nanoparticles. The morphologies of doped cobalt ferrite nanoparticles change from near-spherical to irregular cubelike shapes gradually with the increased carbon or nitrogen concentration, and their particles sizes also increase more than 200 nm. Furthermore, the saturation magnetization of carbon doped cobalt ferrite is improved. Although the saturation magnetization of N-doped cobalt ferrite is not enhanced obviously due to the involved hematite, they also do not drop drastically. The results reveal an approach to synthesize large scale ferrite nanoparticles, and improve the magnetic properties of ferrite nanoparticles, and also provide the potential candidates to synthesis co-doped functional magnetic materials.
机译:碳或氮掺杂的钴铁氧体纳米颗粒通过简便的煅烧过程在空气中合成。 X射线衍射,作图,X射线光电子能谱和mössbauer光谱结果表明,作为间隙的非金属元素被掺杂到钴铁氧体纳米颗粒中。随着碳或氮浓度的增加,掺杂钴铁氧体纳米粒子的形貌逐渐从近球形变为不规则的立方体状,并且其粒径也增加了200μm以上。此外,提高了碳掺杂钴铁氧体的饱和磁化强度。尽管由于参与了赤铁矿,N掺杂钴铁氧体的饱和磁化强度没有明显提高,但它们也不会急剧下降。结果揭示了一种合成大规模铁氧体纳米粒子,改善铁氧体纳米粒子的磁性能的方法,并且为合成共掺杂功能性磁性材料提供了潜在的候选者。

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