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Influence of Atomic Doping on Thermal Stability of Ferrite Nanoparticles—Structural and Magnetic Studies

机译:原子掺杂对铁氧体纳米粒子 - 结构和磁性研究的热稳定性的影响

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摘要

In this paper, a series of experiments are reported where ferrite nanoparticles were synthesized with different substitution percentages (5, 10, 15, or 20%) of Fe2+ by Co2+, Mn2+, or Ni2+ ions. Afterwards, the prepared nanoparticles were thermally treated between 50 and 500 °C in air for 24 h in order to observe how doping influences the oxidation process induced by temperature elevation and access to O2. Nanoparticles were imaged before and after thermal treatment by transmission electron microscopy and were analyzed by X-ray diffraction, vibrating sample magnetometry, and Mössbauer spectroscopy. Presented studies reveal that the amount and kind of doped transition metals (of replaced Fe2+) strongly affect the oxidation process of ferrite nanoparticles, which can govern the application possibility. Each transition element suppresses the oxidation process in comparison to pure Fe-oxides, with the highest impact seen with Ni2+.
机译:在本文中,报道了一系列实验,其中用CO 2 +,MN2 +或Ni2 +离子的不同取代百分比(5,10,15或20%)合成铁氧体纳米颗粒。然后,将制备的纳米颗粒在空气中在50至500℃的空气中进行热处理24小时,以观察掺杂程度如何影响温度升高和o2的氧化过程。通过透射电子显微镜热处理前后成像纳米颗粒,并通过X射线衍射,振动样品磁体和Mössbauer光谱分析。提出的研究表明,掺杂的过渡金属(替换Fe2 +)的量和种类强烈影响铁氧体纳米颗粒的氧化过程,可以控制施用可能性。与纯Fe氧化物相比,每个过渡元件抑制氧化过程,用Ni2 +看到的最高撞击。

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