Karpuz, AliKoçkar, Hakan2021-11-182021-11-182012-04-01Karpuz, A. vd. (2012). "Effect of film thickness on properties of electrodeposited Ni-Co films". Applied Surface Science, 258(12), 5046-5051.0169-43321873-5584https://doi.org/10.1016/j.apsusc.2012.01.083https://www.sciencedirect.com/science/article/pii/S0169433212001134http://hdl.handle.net/11452/22725A series of Ni-Co films with different thicknesses was produced by using the electrodeposition technique and their microstructural, magnetic and magnetotransport properties were investigated. The X-ray (XRD) diffraction measurements showed that the films have the face centered cubic structure and the preferential orientations of the films were in the order of (1 1 1), (2 2 0) and (2 2 0) for the films with 1, 2 and 4 mu m thicknesses, respectively. The magnetic measurements revealed that the coercivity decreased from 52 Oe to 37 Oe due to the regular transition of preferential orientation from (1 1 1) to (2 2 0) with increasing film thickness. The study demonstrated that magnetic properties of the films changed according to the microstructural properties. Magnetoresistance investigations exhibited that all films have anisotropic magnetoresistance (AMR).eninfo:eu-repo/semantics/closedAccessChemistryMaterials sciencePhysicsElectrochemical synthesisMetals and alloysMagnetic properties of monolayers and thin filmsTextureMagnetic-propertiesAnisotropic magnetoresistanceThin-filmsMicrostructureDependenceAlloysGrowthParametersMorphologyBinary alloysCobalt alloysElectrodepositionElectrodesFilm thicknessMagnetic propertiesMagnetoresistanceMetallic filmsMetallurgyTexturesDiffraction measurementsElectrochemical synthesisElectrodeposition techniqueFace centered cubic structureMagnetic and magnetotransport propertiesMicro-structural propertiesThin filmsEffect of film thickness on properties of electrodeposited Ni-Co filmsArticle0003010026000082-s2.0-848579962645046505125812Chemistry, physicalMaterials science, coatings & filmsPhysics, appliedPhysics, condensed matterElectroplating; Cobalt Alloys; Magnetic Properties