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Electrodeposited cobalt films: hcp versus fcc nanostructuring and magnetic properties

机译:电沉积钴膜:hcp与fcc纳米结构和磁性

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The crystallographic structure and morphology of electrodeposited cobalt films on Au(111) is found to be very sensitive on the electrolyte pH value and on the overpotential applied during deposition. The samples, 2 to 500 nm thick, where characterized by nuclear magnetic resonance (NMR), atomic force microscopy (AFM) and electron diffraction. The latter technique shows that the Co films grow in registry with the gold underlayer, reproducing the Au(111) texture. During the first stage of growth and depending on overpotential and pH value, either continuous hcp Co films or hcp Co islands are formed. Only the latter growth mode leads to an out of plane magnetization with 100% of remanence. Increasing the thickness, fcc Co becomes the prevailing phase. Eventually the fcc to hcp ratio saturates at the same value regardless the overpotential. The thickness for which the equilibrium fcc to hcp ratio is obtained as well as the sample structure and morphology before saturation, depend strongly on the overpotential value. In any case, the predominance of the fcc Co phase leads to an in plane magnetization of the thick samples. This study opens up new opportunities of engineering the properties of electrodeposited cobalt films.
机译:发现在Au(111)上电沉积钴膜的晶体结构和形态对电解质pH值和沉积过程中施加的过电势非常敏感。样品厚度为2至500 nm,其特征在于核磁共振(NMR),原子力显微镜(AFM)和电子衍射。后一种技术表明Co膜与金下层对齐生长,从而复制了Au(111)纹理。在生长的第一阶段,根据过电势和pH值,会形成连续的hcp Co膜或hcp Co岛。仅后者的生长模式会导致具有100%剩磁的平面外磁化。随着厚度的增加,fcc Co成为主流。最终,无论超电势如何,fcc与hcp的比率都饱和在相同的值。获得平衡fcc与hcp之比的厚度以及饱和之前的样品结构和形态在很大程度上取决于过电势值。无论如何,fcc Co相的优势会导致厚样品的面内磁化。这项研究为工程化电沉积钴膜的性能开辟了新的机会。

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