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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Exploring the Magnetic Properties of Cobalt-Ferrite Nanoparticles for the Development of a Rare-Earth-Free Permanent Magnet
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Exploring the Magnetic Properties of Cobalt-Ferrite Nanoparticles for the Development of a Rare-Earth-Free Permanent Magnet

机译:探索钴-铁氧体纳米粒子的磁性,以开发无稀土永磁体

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摘要

We present for the first time an in-depth magnetic characterization of a family of monodisperse cobalt-ferrite nanoparticles (NPs) with average size covering a broad range of particles sizes (from 4 to 60 nm), synthesized by thermal decomposition of metalorganic precursors. Metal precursors, surfactants, and synthetic parameters were settled in order to fine-tune the particle size, which preserves a narrow particle size distribution. The morphology of the family of cobalt-ferrite NPs shows a size-dependent behavior, evolving from sphere to octahedrons for size larger than 20 nm and passing through a cubic habit for intermediate sizes. The evolution of the magnetic properties was studied as a function of the particle size and shape, particularly focusing on those determining the best performance as permanent magnet. Although saturation and remnant magnetization increase monotonously with size, reaching a constant value above 20 nm, the coercive field exhibits a nonmonotonic behavior with two distinct maxima values for low and room temperature, respectively. In addition, we evaluated the (BH)(max) product, the figure of merit of permanent magnets, obtaining the highest value ever reported in the literature for cobalt-ferrite NPs (i.e., 2.1 MGOe (18 kJ/m(-3)) for 40 nm NPs). This study allowed us to establish, at least on the basis of the (BH)(max) product, the potentiality of cobalt-ferrite nanoparticles in current permanent magnet technology.
机译:我们首次展示了通过金属有机前体的热分解合成的平均尺寸涵盖了大范围粒径范围(4至60 nm)的单分散钴铁氧体纳米颗粒(NPs)系列的深入磁学表征。沉淀金属前体,表面活性剂和合成参数以微调粒径,从而保留了狭窄的粒径分布。钴铁氧体NP族的形态表现出尺寸依赖性的行为,尺寸从大于20 nm的球体演变为八面体,并通过中等尺寸的立方习惯。研究了磁性能随颗粒尺寸和形状的变化,特别是针对那些确定最佳性能的永磁体。尽管饱和度和剩余磁化强度随尺寸单调增加,在20 nm以上达到恒定值,但矫顽场表现出非单调性,分别针对低温和室温具有两个不同的最大值。此外,我们评估了(BH)(max)乘积,即永磁体的品质因数,获得了钴铁氧体NPs文献中报道的最高值(即2.1 MGOe(18 kJ / m(-3)) )(适用于40 nm NP)。这项研究至少可以在(BH)(max)乘积的基础上确定当前永磁技术中钴铁氧体纳米粒子的潜力。

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