首页> 外文期刊>Journal of Applied Physics >Recording-media-related morphology and magnetic properties of crystalline CoPt3 and CoPt3-Au core-shell nanoparticles synthesized via reverse microemulsion
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Recording-media-related morphology and magnetic properties of crystalline CoPt3 and CoPt3-Au core-shell nanoparticles synthesized via reverse microemulsion

机译:反相微乳液合成的晶体CoPt 3 和CoPt 3 -Au核壳纳米粒子的记录介质相关形貌和磁性

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A comparative experimental study of the magnetic properties of CoPt3 and CoPt3/Au nanoparticles as well as a detailed study of the structural properties of the samples by X-ray diffraction, Transmission electron microscopy, and vibrating sample magnetometer is presented in this work. In addition, the effect of particle size on the structure and magnetic properties of nanoparticles prepared by microemulsion is studied. The correlation between particle size, crystallinity, and magnetization was studied as well. CoPt nanoparticles have been studied intensively over the last decade because of their increased magnetic anisotropy in the ordered phase that can be interesting for high density magnetic recording. A significant high coercivity for as-prepared CoPt3 and CoPt3-Au nanoparticles was obtained at room temperature and enhanced after annealing. The focused aim of our study is to obtain high coercivity at room temperature that follows the Curie-Weiss law. This indicates an interacting system in which the nanoparticles behave like single domain ferromagnetic materials in the particle size range of 8 to 35 nm. In addition, the interaction increases by cooling the samples to low temperature around 15 K. Temperature dependence 1/M graph was obtained to investigate the behavior of nanoparticles at low temperature and shows the best fit with Curie-Weis mode.
机译:CoPt 3 和CoPt 3 / Au纳米粒子的磁性能的对比实验研究,以及通过X射线衍射对样品的结构特性进行的详细研究,这项工作介绍了透射电子显微镜和振动样品磁力计。此外,研究了粒径对微乳液制备的纳米颗粒的结构和磁性的影响。还研究了粒度,结晶度和磁化强度之间的相关性。过去十年来,由于CoPt纳米粒子在有序相中增加了磁各向异性,这对高密度磁记录可能是令人感兴趣的,因此对此进行了深入研究。制备的CoPt 3 和CoPt 3 -Au纳米粒子在室温下具有显着的高矫顽力,并且在退火后增强。我们研究的重点是在室温下遵循居里-魏斯定律获得高矫顽力。这表明了一种相互作用的系统,其中纳米粒子的行为类似于粒径在8至35 nm范围内的单畴铁磁材料。此外,通过将样品冷却至约15 K的低温将增加相互作用,获得温度依赖性1 / M图以研究纳米颗粒在低温下的行为,并显示与居里-魏斯模式的最佳拟合。

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