Ni-Cu alloy films were potentiostatically electrodeposited from the electrolytes with low pH (2.0) and high pH (3.3) levels. The structural analysis of the films was carried out using the X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques. The XRD data showed that the crystal texture degree was different for the films grown at high pH and low pH. At high pH, the films have a strong (100) texture of the face-centred cubic (fcc) structure, while for the films at low pH the crystal planes are randomly oriented, as in a powder pattern of Cu (or Ni). The SEM studies revealed that the surface morphology of the films strongly depend on the electrolyte pH. Furthermore, the magnetic characteristics studied by a vibrating sampl...
Bu çalışma, 28 Eylül - 02 Ekim 2010 tarihleri arasında Istanbul[Türkiye]’da düzenlenen International...
Ternary NiCoFe films were potentiostatically electrodeposited from the electrolytes with low (3.0) a...
It was found that it is possible to grow Ni_xCu_1_-_x alloy systems of arbitrary composition by elec...
Single Ni and Ni-Cu alloy films were electrodeposited on polycrystalline Ti substrates from electrol...
Nanocrystalline nickel (Ni) films were obtained by electrodeposition from chloride aqueous solution ...
Composition, microstructure, and surface morphology of Ni-Cu alloy films electrodeposited at differe...
Ni-Cu/Cu multilayers have been, grown from a single electrolyte under potentiostatic conditions at d...
IEEE International Magnetics Conference (Intermag) -- MAY 04-08, 2014 -- Dresden, GERMANYWOS:0003494...
In this study, Ni–Cu films are grown on ITO (indium tin oxide) coated glass substrates by electrodep...
The effect of electrolyte pH on structural, magnetic, and magnetoresistive properties of Co-Ni films...
In the last years, the development of magnetic recording and sensor technology has led to the compre...
We have studied the effect of electrolyte pH on the "giant magnetoresistance " in Co-Ni-Cu...
WOS:000314527900022The effect of electrolyte pH on structural, magnetic, and magnetoresistive proper...
This research has developed Cu/Ni film aided by the magnetic field (B) to investigate the effects of...
We have studied the effect of electrolyte pH on the "giant magnetoresistance" in Co-Ni-Cu/Cu superla...
Bu çalışma, 28 Eylül - 02 Ekim 2010 tarihleri arasında Istanbul[Türkiye]’da düzenlenen International...
Ternary NiCoFe films were potentiostatically electrodeposited from the electrolytes with low (3.0) a...
It was found that it is possible to grow Ni_xCu_1_-_x alloy systems of arbitrary composition by elec...
Single Ni and Ni-Cu alloy films were electrodeposited on polycrystalline Ti substrates from electrol...
Nanocrystalline nickel (Ni) films were obtained by electrodeposition from chloride aqueous solution ...
Composition, microstructure, and surface morphology of Ni-Cu alloy films electrodeposited at differe...
Ni-Cu/Cu multilayers have been, grown from a single electrolyte under potentiostatic conditions at d...
IEEE International Magnetics Conference (Intermag) -- MAY 04-08, 2014 -- Dresden, GERMANYWOS:0003494...
In this study, Ni–Cu films are grown on ITO (indium tin oxide) coated glass substrates by electrodep...
The effect of electrolyte pH on structural, magnetic, and magnetoresistive properties of Co-Ni films...
In the last years, the development of magnetic recording and sensor technology has led to the compre...
We have studied the effect of electrolyte pH on the "giant magnetoresistance " in Co-Ni-Cu...
WOS:000314527900022The effect of electrolyte pH on structural, magnetic, and magnetoresistive proper...
This research has developed Cu/Ni film aided by the magnetic field (B) to investigate the effects of...
We have studied the effect of electrolyte pH on the "giant magnetoresistance" in Co-Ni-Cu/Cu superla...
Bu çalışma, 28 Eylül - 02 Ekim 2010 tarihleri arasında Istanbul[Türkiye]’da düzenlenen International...
Ternary NiCoFe films were potentiostatically electrodeposited from the electrolytes with low (3.0) a...
It was found that it is possible to grow Ni_xCu_1_-_x alloy systems of arbitrary composition by elec...