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Magnetic properties of nanocrystalline CoPt electrodeposited films. Influence of P incorporation

机译:纳米晶CoPt电沉积膜的磁性。磷掺入的影响

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Platinum-rich CoPt films have been electrodeposited with the aim of preparing hard magnetic films on silicon-based substrates without the need for subsequent annealing. Electrodeposition conditions have permitted the crystalline structure of the films to be controlled. Pt percentages of up to 60–65 wt.% have been attained while maintaining the hexagonal Co phase, leading to CoPt films with moderate coercivity and good corrosion resistance. However, when low deposition potentials were used, CoPt films with higher Pt percentages were obtained, but in this case, the films exhibited an fcc structure, having lower coercivity and less corrosion resistance. The presence of hypophosphite in the solution limited the platinum percentage in the deposited CoPtP films, but an hexagonal close-packed (hcp) structure was always observed in this case. The incorporation of P into the deposits led to increases in both the coercivity of the films and the corrosion resistance of the coatings, with respect to pure CoPt. The highest coercivity was obtained for hcp CoPtP deposits with 40 wt.% of Pt.
机译:富铂CoPt膜已被电沉积,目的是在硅基衬底上制备硬磁膜,而无需后续退火。电沉积条件允许控制膜的晶体结构。在保持六角形Co相的同时,Pt百分比达到60-65 wt。%,导致CoPt膜具有适度的矫顽力和良好的耐腐蚀性。然而,当使用低沉积电位时,获得具有较高Pt百分比的CoPt膜,但是在这种情况下,该膜表现出fcc结构,具有较低的矫顽力和较低的耐腐蚀性。溶液中次磷酸盐的存在限制了沉积的CoPtP膜中铂的百分比,但是在这种情况下始终观察到六方密堆积(hcp)结构。与纯CoPt相比,将P掺入沉积物中会导致薄膜的矫顽力和涂层的耐蚀性均提高。具有40 wt。%Pt的hcp CoPtP沉积物获得了最高的矫顽力。

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