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Size dependence of the magnetic properties of Ni nanoparticles prepared by thermal decomposition method

机译:热分解法制备的镍纳米粒子磁性能的尺寸依赖性

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摘要

By means of thermal decomposition, we prepared single-phase spherical Ni nanoparticles (23 to 114 nm in diameter) that are face-centered cubic in structure. The magnetic properties of the Ni nanoparticles were experimentally as well as theoretically investigated as a function of particle size. By means of thermogravimetric/differential thermal analysis, the Curie temperature TC of the 23-, 45-, 80-, and 114-nm Ni particles was found to be 335°C, 346°C, 351°C, and 354°C, respectively. Based on the size-and-shape dependence model of cohesive energy, a theoretical model is proposed to explain the size dependence of TC. The measurement of magnetic hysteresis loop reveals that the saturation magnetization MS and remanent magnetization increase and the coercivity decreases monotonously with increasing particle size, indicating a distinct size effect. By adopting a simplified theoretical model, we obtained MS values that are in good agreement with the experimental ones. Furthermore, with increase of surface-to-volume ratio of Ni nanoparticles due to decrease of particle size, there is increase of the percentage of magnetically inactive layer.
机译:通过热分解,我们制备了面心立方结构的单相球形Ni纳米颗粒(直径23至114 nm)。 Ni纳米粒子的磁性能在实验上以及理论上都作为粒径的函数进行了研究。通过热重/差热分析,发现23、45、80和114nm Ni粒子的居里温度TC为335°C,346°C,351°C和354°C , 分别。基于内聚能的尺寸和形状依赖性模型,提出了理论模型来解释TC的尺寸依赖性。磁滞回线的测量表明,随着粒径的增加,饱和磁化强度MS和剩余磁化强度增加,矫顽力单调降低,表明存在明显的尺寸效应。通过采用简化的理论模型,我们获得了与实验值非常吻合的MS值。此外,随着由于颗粒尺寸的减小而使Ni纳米颗粒的表面体积比增加,磁活性层的百分比增加。

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