In this study, effect of electrolyte temperature on structural and morphological properties of Fe-Cu films electrodeposited on ITO coated glass substrates has been investigated. Structural analysis carried out by using X-ray diffraction indicated that the films consist of a mixture of face-centered cubic (FCC) Cu and body centered cubic (BCC) alpha-Fe phases. It was found that the crystalline size of both Fe and Cu increases with increasing electrolyte temperature. Compositional analysis performed using energy dispersive X-ray spectroscopy showed that the Cu content within the films enhances with increasing electrolyte temperature. The surface morphology of Fe-Cu films was studied using a scanning electron microscopy (SEM). SEM results indi...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
At or above room temperature, metal electrodeposits often feature coarse grains, uneven microstructu...
In this study, effect of electrolyte temperatureon structural and morphological properties of ...
Fe-Cu films with low and high Fe : Cu ratio have been produced from the electrolytes with different ...
The microstructural and magnetic properties of Fe-Cu films were studied in terms of Cu content in th...
The microstructural and magnetic properties of Fe-Cu films were studied in terms of Cu content in th...
A detailed study has been carried out to investigate the effect of applied current density on the co...
In this work, we have studied the effect of the electrolyte temperature on the compositional, struct...
In this work, we have studied the effect of the electrolyte temperature on the compositional, struc...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable deposi...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable deposi...
A detailed study has been carried out to investigate the effect of applied current density on the co...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable depos...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable depos...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
At or above room temperature, metal electrodeposits often feature coarse grains, uneven microstructu...
In this study, effect of electrolyte temperatureon structural and morphological properties of ...
Fe-Cu films with low and high Fe : Cu ratio have been produced from the electrolytes with different ...
The microstructural and magnetic properties of Fe-Cu films were studied in terms of Cu content in th...
The microstructural and magnetic properties of Fe-Cu films were studied in terms of Cu content in th...
A detailed study has been carried out to investigate the effect of applied current density on the co...
In this work, we have studied the effect of the electrolyte temperature on the compositional, struct...
In this work, we have studied the effect of the electrolyte temperature on the compositional, struc...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable deposi...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable deposi...
A detailed study has been carried out to investigate the effect of applied current density on the co...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable depos...
Fe-Cu alloys were grown on polycrystalline titanium substrates after determining the suitable depos...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
X-ray profile and texture analysis, optical microscopy and microhardness measurement were used in or...
At or above room temperature, metal electrodeposits often feature coarse grains, uneven microstructu...