Characterisations of CoCu films electrodeposited at different cathode potentials
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Date
2010-05
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Elsevier
Abstract
Structural and magnetic properties of CoCu films electrodeposited on polycrystalline Cu substrates were investigated as a function of cathode potential used for their deposition. The compositional analysis, performed by energy dispersive X-ray spectroscopy, demonstrated that an increase in the deposition potential results in an increase in Co content of CoCu films. The crystal structure of the films was studied using the X-ray diffraction (XRD) technique. It was observed that they have a face centred cubic (fcc) structure, but also contain partly hexagonal close-packed phase. XRD results revealed that the (1 1 1) peak of fcc structure splits into two as Co (1 1 1) and Cu (1 1 1) peaks and the peak intensities change depending on the deposition potential and hence the film composition. The magnetic measurements were carried out at room temperature using a vibrating sample magnetometer. The magnetic findings indicated that coercivity decreases and saturation magnetisation increases with the increase of Co:Cu ratio caused by the deposition potential and also all films have planar magnetisation.
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Keywords
CoCu film, Electrodeposition, Crystal structure, Morphology, Magnetic property, Magnetic-properties, Granular alloys, Thin-films, Materials science, Physics, Cobalt, Copper, Corrosion, Electrodeposition, Magnetic properties, Magnetism, Morphology, Saturation magnetization, X ray diffraction, X ray spectroscopy, Cathode potential, Co content, CoCu film, Coercivities, Compositional analysis, Cu substrate, Cu(1 1 1), Deposition potential, Energy dispersive X ray spectroscopy, Face-centred cubic, Fcc structures, Film composition, Hexagonal close-packed, Magnetic measurements, Magnetisation, Peak intensity, Polycrystalline, Room temperature, Structural and magnetic properties, Vibrating sample magnetometer, XRD
Citation
Karaağaç, Ö. vd. (2010). "Characterisations of CoCu films electrodeposited at different cathode potentials". Journal of Magnetism and Magnetic Materials, 322(9-12), 1098-1101.