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Synthesis and Properties of Ferrite-Based Nanoparticles

机译:铁氧体基纳米粒子的合成与性能

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摘要

The work is dedicated to the study of the structural and optical characteristics, as well as the phase transformations, of ferrite nanoparticles of CeO2-Fe2O3. To characterize the results obtained, the methods of scanning and transmission microscopy, X-ray diffraction (XRD) spectroscopy, and Mössbauer spectroscopy were applied. It was found that the initial nanoparticles are polycrystalline structures based on cerium oxide with the presence of X-ray amorphous inclusions in the structure, which are characteristic of iron oxide. The study determined the dynamics of phase and structural transformations, as well as the appearance of a magnetic texture depending on the annealing temperature. According to the Mossbauer spectroscopy data, it has been established that a rise in the annealing temperature gives rise to an ordering of the magnetic properties and a decrease in the concentration of cationic and vacancy defects in the structure. During the life test of synthesized nanoparticles as cathode materials for lithium-ion batteries, the dependences of the cathode lifetime on the phase composition of nanoparticles were established. It is established that the appearance of a magnetic component in the structure result in a growth in the resource lifetime and the number of operating cycles. The results show the prospects of using these nanoparticles as the basis for lithium-ion batteries, and the simplicity of synthesis and the ability to control phase transformations opens up the possibility of scalable production of these nanoparticles for cathode materials.
机译:这项工作致力于研究CeO2-Fe2O3的铁氧体纳米粒子的结构和光学特性以及相变。为了表征获得的结果,应用了扫描和透射显微镜,X射线衍射(XRD)光谱和Mössbauer光谱的方法。发现最初的纳米颗粒是基于氧化铈的多晶结构,在结构中存在X射线非晶夹杂物,这是氧化铁的特征。该研究确定了相变和结构转变的动力学,以及取决于退火温度的磁织构的外观。根据Mossbauer光谱数据,已经确定,退火温度的升高会引起磁性能的有序化,并减少结构中阳离子和空位缺陷的浓度。在作为锂离子电池正极材料的合成纳米粒子的寿命测试中,建立了阴极寿命对纳米粒子相组成的依赖性。可以确定的是,结构中磁性成分的出现导致资源寿命和操作周期数的增加。结果显示了使用这些纳米颗粒作为锂离子电池基础的前景,合成的简单性和控制相变的能力为可扩展生产用于阴极材料的这些纳米颗粒提供了可能性。

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