Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni films with film thickness in the range of 50-500 nm were analyzed. The samples were magnetically soft with coercivity in the range H-c = 2-20 Oe and uni axial magnetic anisotropy up to H-k = 20 Oe. It was found that H-c decreases and H-k increases with increasing film thickness. The BCC phase dominates at small film thickness up to about 80 nm and the FCC phase increases when the film growths to a larger thickness. The increase of FCC phase correlates with the improvement of the ultrasoft magnetic properties. © 2004 Elsevier B.V. All rights reserved
In this research, CoFeNi thick films were prepared through the electrodeposition process from a natu...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
In this research, CoFeNi thick films were prepared through the electrodeposition process from a natu...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
Variations of phase composition and magnetic properties of electrodeposited nanocrystalline Co-Fe-Ni...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
The structure, chemical composition, and magnetic properties of electrochemically deposited nanocrys...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
By choosing the right production parameters, in-plane, uniaxial anisotropy up to about 15 Oe (1250 J...
In this research, CoFeNi thick films were prepared through the electrodeposition process from a natu...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...
We electroplated Fe-Co-Ni films in ammonium-chloride-based plating baths, and investigated the effec...