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首页> 外文期刊>Journal of nanoscience and nanotechnology >Yttrium-Doped Cobalt Nanoferrites Prepared by Sol-Gel Combustion Method and Its Characterization
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Yttrium-Doped Cobalt Nanoferrites Prepared by Sol-Gel Combustion Method and Its Characterization

机译:溶胶-凝胶燃烧法制备掺钇钴纳米铁氧体及其表征

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摘要

Ferrites are extremely important magnetic ceramics in the production of electronic components because they reduce the energy losses by the induced currents acting as electrical insulators. Similarly, the spinel-structured cobalt-based ferrites are promising materials for stress, torsion sensors and energy storage applications (anode materials in lithium batteries, fuel cells and solar cells). Therefore, many studies have focused on cobalt ferrites obtained using conventional techniques. Different sintering conditions, types and levels of substitution result in different microstructures and magnetostriction coefficients under a wide range of preparation conditions. Despite many attempts, there are no specific reports on the trivalent substitution of yttrium in cobalt ferrite to the best of our knowledge. In the present study, yttrium-doped cobalt ferrite was prepared with different concentrations to identify the crystallite size with respect to the yttrium concentration, temperature and changes in the structural and electrical properties. In addition, the resistance of the nanostructured yttrium-doped cobalt ferrites nanopowders was analyzed. The resistance was increased by the addition of yttrium to cobalt ferrites.
机译:铁氧体在电子元件的生产中是极其重要的磁性陶瓷,因为它们通过充当电绝缘体的感应电流减少了能量损失。同样,尖晶石结构的钴基铁氧体是有希望的材料,可用于应力,扭力传感器和能量存储应用(锂电池,燃料电池和太阳能电池中的阳极材料)。因此,许多研究集中于使用常规技术获得的钴铁氧体。在广泛的制备条件下,不同的烧结条件,取代的类型和水平会导致不同的微观结构和磁致伸缩系数。尽管进行了许多尝试,但据我们所知,还没有关于钴铁氧体中钇被三价取代的具体报道。在本研究中,制备了不同浓度的掺钇的钴铁氧体,以鉴定相对于钇浓度,温度以及结构和电学性质变化的微晶尺寸。此外,分析了纳米结构的钇掺杂钴铁氧体纳米粉的电阻。通过在钴铁氧体中添加钇来增加电阻。

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