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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Solubility extension and phase formation in gas-condensed Co-W nanoclusters
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Solubility extension and phase formation in gas-condensed Co-W nanoclusters

机译:气体浓缩的Co-W纳米团簇的溶解度扩展和相形成

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摘要

Co-W alloy clusters with extended solubility of W in hcp Co were produced by inert-gas condensation. The structural state of the as-deposited Co-W clusters was found to be critically dependent on processing parameters such as the cooling scheme and sputtering power. For the water-cooled clusters, the mean size and percent crystalline were strongly dependent on sputtering power, while the percent crystalline of the liquid nitrogen-cooled clusters was not as affected by the sputtering power. At low sputtering powers, the water-cooled clusters were predominantly amorphous, but became increasingly more crystalline as the sputtering power increased. The predominant crystalline phase was hcp Co(W), but high-resolution transmission electron microscopy revealed that very small and very large clusters contained fcc and Co_3W structures, respectively. For liquid nitrogen cooling the clusters were predominantly amorphous regardless of sputtering power, although at the highest sputtering power a small percentage of the clusters were crystalline. The magnetic properties were dependent on cooling schemes, sputtering power, and temperature, with the highest coercivity of 893 Oe obtained at 10 K for water-cooled clusters sputtered at 150 W. The magnetocrystalline anisotropy of the water-cooled sample increased with increasing sputtering power, with the highest anisotropy of 3.9 × 10~6 ergs/cm~3 recorded for clusters sputtered at 150 W. For liquid nitrogen-cooled samples, the anisotropy was approximately constant for all sputtering powers.
机译:通过惰性气体冷凝法生产了W在hcp Co中具有更大溶解度的Co-W合金簇。发现沉积的Co-W簇的结构状态关键地取决于诸如冷却方案和溅射功率的处理参数。对于水冷的团簇,平均尺寸和结晶百分比强烈地依赖于溅射功率,而液氮冷却的团簇的结晶百分比不受溅射功率的影响。在低溅射功率下,水冷团簇主要是非晶态的,但随着溅射功率的增加,晶体变得越来越结晶。主要的结晶相是hcp Co(W),但高分辨率透射电子显微镜显示,非常小的和非常大的簇分别包含fcc和Co_3W结构。对于液氮冷却,无论溅射功率如何,簇主要为非晶态,尽管在最高溅射功率下,只有很小一部分簇是结晶的。磁性能取决于冷却方案,溅射功率和温度,对于以150 W溅射的水冷簇,在10 K下获得的最高矫顽力为893 Oe。水冷样品的磁晶各向异性随溅射功率的增加而增加。 ,在150 W溅射的簇中记录的最高各向异性为3.9×10〜6 ergs / cm〜3。对于液氮冷却的样品,各向异性在所有溅射功率下均近似恒定。

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