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High-density gas aggregation nanoparticle gun applied to the production of SmCo clusters

机译:高密度气体聚集纳米粒子枪在S钴团簇生产中的应用

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摘要

We describe in this article the application of a high-density gas aggregation nanoparticle gun to the production and characterization of high anisotropy SmCo nanoparticles. We give a detailed description of the simple but efficient experimental apparatus with a focus on the microscopic processes of the gas aggregation technique. Using high values of gas flux (~45 sccm) we are able to operate in regimes of high collimation of material. In this regime, as we explain in terms of a phenomenological model, the power applied to the sputtering target becomes the main variable to change the size of the clusters. Also presented are the morphological, structural, and magnetic characterizations of SmCo nanoparticles produced using 10 and 50 W of sputtering power. These values resulted in mean sizes of ~12 and ~20 nm. Significant differences are seen in the structural and magnetic properties of the samples with the 50 W sample showing a largely enhanced crystalline structure and magnetic anisotropy.
机译:我们在本文中描述了高密度气体聚集纳米粒子枪在高各向异性SmCo纳米粒子的生产和表征中的应用。我们将重点介绍气体聚集技术的微观过程,对简单而有效的实验设备进行详细说明。使用较高的气体通量值(〜45 sccm),我们可以在高度准直的材料下进行操作。在这种情况下,正如我们根据现象学模型所解释的那样,施加到溅射靶上的功率成为改变团簇尺寸的主要变量。还介绍了使用10和50 W溅射功率产生的SmCo纳米颗粒的形态,结构和磁性特征。这些值导致〜12和〜20 nm的平均大小。在样品的结构和磁性能上发现了显着差异,其中50 W样品显示出大大增强的晶体结构和磁各向异性。

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