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A novel strategy to synthesize anisotropic SmCo5 particles from Co/Sm(OH)(3) composites with special morphology

机译:具有特殊形态学的CO / SM(OH)(3)复合材料的各向异性SMCO5颗粒合成各向异性SMCO5颗粒的新策略

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摘要

In this study, we report a new strategy for preparing magnetically anisotropic SmCo5 single crystal particles by reductive annealing of precursors with specially designed nanostructures. The precursors containing urchin-shaped Co clusters and Sm(OH)(3) nanorods were synthesized by a hydrothermal process. Then we coated these precursors of Co/Sm(OH)(3) nanocomposites with Ca(OH)(2), and the following thermal reduction generated SmCo5 particles, where the original size and morphology of the precursor were basically preserved after undergoing high temperature annealing. The single crystalline SmCo5 particles exhibit strong magnetic anisotropy and excellent room temperature magnetic properties: remanence of 8.1 kG, coercivity of 25.7 kOe, and a maximum energy product of 15.8 MGOe, which is one of the highest maximum energy products for chemically synthesized nanostructured SmCo5 particles presently reported.
机译:在本研究中,我们通过用专门设计的纳米结构的前体进行了还原的退火来报告一种制备磁性各向异性SMCO5单晶颗粒的新策略。 通过水热法合成含有核心形CO簇和SM(OH)(3)纳米杆的前体。 然后我们涂覆与Ca(OH)(2)的这些CO / SM(OH)(3)纳米复合材料的这些前体,以及以下热还原产生的SMCO5颗粒,其中前体的原始尺寸和形态基本保持在经历高温后基本保持 退火。 单晶Smco5颗粒具有强磁各向异性和优异的室温磁性特性:剩磁8.1公斤,矫顽力为25.7只koe,最大能量乘积为15.8 mgoe,这是化学合成纳米结构的最高能量产品之一 目前报道。

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