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Chemical Synthesis of High-Stable Amorphous FeCo Nanoalloys with Good Magnetic Properties

机译:具有良好磁性的高稳态无定形FECO纳米合金化学合成

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摘要

It is difficult to fabricate high-purity amorphous FeCo alloys by traditional physical methods due to their weak glass forming ability. In this work, the fully amorphous FeCo nanoalloys with high purity and good stability have been prepared by a direct chemical reduction of Fe2+ and Co2+ ions with NaBH4 as the reducing agent and polyvinylpyrrolidone (PVP) as the surfactant. The morphologies, surface compositions and particle sizes with their distribution of these amorphous samples can be effectively tuned by the suitable PVP additions. High crystallization temperature up to 468 °C, high saturation magnetization of 196.2 A·m2·kg−1 and low coercivity of 83.3 Oe are obtained in amorphous FeCo nanoalloys due to their uniform distribution, weak surface oxidation and low surface B concentration. Good frequency-dependent magnetic properties can be also achieved in the fully compacted amorphous sample with a high density of 7.20 g/cm3. The simple chemical method, high stability and good magnetic properties for these amorphous FeCo nanoalloys promise their significant potential applications in high-power magnetic devices.
机译:由于玻璃形成能力弱,难以通过传统的物理方法制造高纯度无定形的FECO合金。在这项工作中,通过用NaBH 4的Fe2 +和CO 2 +离子直接化学还原为还原剂和聚乙烯醇吡咯烷酮(PVP)作为表面活性剂的直接化学化学品,制备具有高纯度和良好稳定性的完全无定形的FECO纳米合金。具有它们对这些无定形样品的分布的形态,表面组合物和颗粒尺寸可以通过合适的PVP添加有效地调节。高于468℃的高结晶温度,高饱和磁化强度为196.2A·M2·Kg-1和83.30e的低矫顽力,由于其均匀的分布,弱表面氧化和低表面B浓度,在无定形的FECO纳米铝中获得。良好的频率依赖性磁性也可以在完全压实的无定形样品中实现,高密度为7.20g / cm3。这些无定形FECO纳米铝合金的简单化学方法,高稳定性和良好的磁性能够在高功率磁性装置中承诺其显着的潜在应用。

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