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首页> 外文期刊>CERAMICS INTERNATIONAL >Structural, magnetic and magnetostrictive properties of Co1-xLixFe2O4 synthesized by cathode materials of spent Li-ion batteries
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Structural, magnetic and magnetostrictive properties of Co1-xLixFe2O4 synthesized by cathode materials of spent Li-ion batteries

机译:CO1-XLIXFE2O4的结构,磁性和磁致伸缩性能由锂离子电池的阴极材料合成

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In this study, we investigated the effects of substituting Li+ for Co2+ at the B sites of the spinel lattice on the structural, magnetic and magnetostrictive properties of cobalt ferrites. The Li+ substituted cobalt ferrites, Co1-xLixFe2O4, with x varying from 0 to 0.7 in 0.1 increments, were synthesized with a sol-gel auto-combustion method using the cathode materials of spent Li-ion batteries. X-ray diffraction analysis revealed that all the Co1-x LixFe2O4 nanopowders had a single-phase spinel structure and the lattice parameters decreased with increasing Li+ content, which can be proved by slight shifts towards higher diffraction angle values of the (311) peak. Field emission scanning electron microscopy was used to observe the fractured inner surface of the sintered cylindrical rods and the increased porosity resulted in a decreased magnetostriction. The oxidation states of Co and Fe in the cobalt ferrite samples were examined by X-ray photoelectron spectroscopy. High resolution transmission electron microscopy micrographs showed that most particles were roughly spherical and with sizes of 25-35 nm. Li+ substitution had a strong effect on the saturation magnetization and coercivity, which were characterized with a vibrating sample magnetometer. The Curie temperature was reduced due to the decrease in magnetic cations and the weakening of the exchange interactions. The magnetostrictive properties were influenced by the incorporation of Li+ at the B sites of the spinel structure and correlated with the changes in porosity, magneto crystalline anisotropy and the cation distribution.
机译:在该研究中,我们研究了在尖晶石晶格的B位点替代Li +在尖晶石晶格的B态的影响的效果。利用废锂离子电池的阴极材料,合成Li +取代的钴铁氧体,Co1-XlixFe 2O4,x为0.1的0.1的0.1%,用溶胶 - 凝胶自燃方法合成。 X射线衍射分析显示,所有CO1-X LixFe2O4纳米粉末具有单相尖晶石结构,并且晶格参数随着LI +含量的增加而降低,这可以通过朝向(311)峰的较高衍射角值而被证明。场发射扫描电子显微镜用于观察烧结圆柱形杆的断裂内表面,并且增加的磁性排列导致的磁性缺陷率降低。通过X射线光电子能谱检查钴铁氧体样品中CO和Fe的氧化状态。高分辨率透射电子显微镜显微照片显示大多数颗粒大致球形,尺寸为25-35nm。 Li +取代对饱和磁化强度和矫顽力具有很大的影响,其具有振动样品磁力计。由于磁性阳离子的降低和交换相互作用的弱化,居里温度降低。磁致伸缩性能受尖晶石结构B位点的Li +的影响,并与孔隙率,磁晶各向异性和阳离子分布的变化相关。

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