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Scanning of nickel sulfamate concentration in electrodeposition bath used for production of Ni-Co alloys

Karpuz, Ali; Kockar, Hakan; Alper, Mursel


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        "affiliation": "Karamanoglu Mehmetbey Univ, Kamil Ozdag Sci Fac, Dept Phys, TR-70100 Karaman, Turkey", 
        "name": "Karpuz, Ali"
      }, 
      {
        "affiliation": "Balikesir Univ, Sci & Literature Fac, Dept Phys, Balikesir, Turkey", 
        "name": "Kockar, Hakan"
      }, 
      {
        "affiliation": "Uludag Univ, Sci & Literature Fac, Dept Phys, Bursa, Turkey", 
        "name": "Alper, Mursel"
      }
    ], 
    "description": "The Ni-Co films were produced by using the electrodeposition technique from the electrolytes with different Ni(SO3 center dot NH2)(2)center dot 4H(2)O concentrations (from 0 to 0.45 M). The Ni content of the films changed gradually from 0 to 57 %. The Ni-Co system exhibited anomalous codeposition. For 0 at.% Ni content, the saturation magnetization, M-s of the film was found to be 1298 emu/cm(3), which is close to that of bulk Co (1420 emu/cm(3)). As the Ni content increased, M-s decreased since the M-s value of bulk Ni (480 emu/cm(3)) is lower than that of bulk Co. The coercivity, H-c, of Co film was found as 37 Oe. When the Ni content increased to 6 at.%, the H-c value dramatically increased to 109 Oe. The hexagonal closed packed (hcp) structure was observed for the films containing 0 and 6 at.% Ni. When the Ni content increased to 25 at.%, a mixed phase of face centered cubic (fcc) and hcp structure (mostly fcc) was detected. For further increase in Ni content (39 and 57 at.%), the peaks which occurred from the reflections of fcc phase were obtained. As a result of structural analysis, the Co content can be determined as 62-64 at.% for changing of crystal structure. The transfiguration from spherical granular to acicular surface morphology occurred around 75 at.% Co content. Magnetoresistance of the films was measured and it was found that the films show anisotropic magnetoresistance.", 
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      "issue": "9", 
      "pages": "3376-3381", 
      "title": "JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS", 
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