Next-generation high frequency, high power density, and high operating temperature electrical machines require superior materials which possess an attractive combination of structural as well as functional properties. Development of such new materials by conventional methods is very slow, expensive, and restricted to a few compositions. Hence, we addressed this challenge by the accelerated assessment of multiple properties of a range of Fe-Co-Ni based material compositions. We utilized the magnetron co-sputtering method to prepare compositionally modulated ternary Fe-Co-Ni thin film alloy (TFA) libraries. The structural, electrical, magnetic, and mechanical properties of these libraries were assessed. The structure and properties were found...
A electro-plated Co-Ni-P magnetic alloy film is very hopeful for high density magnetic recording med...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe demonstrate the efficien...
Nickel-rich NiFe thin films (Ni92Fe8, Ni89Fe11 and Ni83Fe17) were prepared by combining atomic layer...
Ternary iron-cobalt-nickel (Fe-Co-Ni) alloys have many structural and magnetic industrial applicatio...
Metglas 2826 MB having a nominal composition of Fe40Ni38Mo4B18 is an excellent soft magnetic materia...
The electrodeposition of binary magnetic alloys such as Fe-Ni, Co-Ni and Fe-Co of iron group metals ...
[[abstract]]Soft magnetic with suitable uniaxial anisotropy and high saturation magnetization are re...
Magnetic multi-component alloys (MCAs) are the new class of multicomponent alloys where, combination...
Thin films of Ni-Fe alloys of various compositions have been deposited potentiostatically from an al...
Magnetism and magnetic materials have been playing a lead role in improving the quality of life. The...
Available from British Library Document Supply Centre- DSC:D51822/84 / BLDSC - British Library Docum...
[[abstract]]Soft magnetic thin films with suitable uniaxial anisotropy and high saturation magnetiza...
The ever increasing quality and reliability demand of microsystems indicate that the electrodeposite...
In recent years, considerable attention has been devoted to the investigation of the physical proper...
[[abstract]]Soft magnetic thin films with suitable uniaxial anisotropy and high saturation magnetiza...
A electro-plated Co-Ni-P magnetic alloy film is very hopeful for high density magnetic recording med...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe demonstrate the efficien...
Nickel-rich NiFe thin films (Ni92Fe8, Ni89Fe11 and Ni83Fe17) were prepared by combining atomic layer...
Ternary iron-cobalt-nickel (Fe-Co-Ni) alloys have many structural and magnetic industrial applicatio...
Metglas 2826 MB having a nominal composition of Fe40Ni38Mo4B18 is an excellent soft magnetic materia...
The electrodeposition of binary magnetic alloys such as Fe-Ni, Co-Ni and Fe-Co of iron group metals ...
[[abstract]]Soft magnetic with suitable uniaxial anisotropy and high saturation magnetization are re...
Magnetic multi-component alloys (MCAs) are the new class of multicomponent alloys where, combination...
Thin films of Ni-Fe alloys of various compositions have been deposited potentiostatically from an al...
Magnetism and magnetic materials have been playing a lead role in improving the quality of life. The...
Available from British Library Document Supply Centre- DSC:D51822/84 / BLDSC - British Library Docum...
[[abstract]]Soft magnetic thin films with suitable uniaxial anisotropy and high saturation magnetiza...
The ever increasing quality and reliability demand of microsystems indicate that the electrodeposite...
In recent years, considerable attention has been devoted to the investigation of the physical proper...
[[abstract]]Soft magnetic thin films with suitable uniaxial anisotropy and high saturation magnetiza...
A electro-plated Co-Ni-P magnetic alloy film is very hopeful for high density magnetic recording med...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe demonstrate the efficien...
Nickel-rich NiFe thin films (Ni92Fe8, Ni89Fe11 and Ni83Fe17) were prepared by combining atomic layer...