Magnetic characteristics of arrays of Ni nanowires embedded in porous alumina are reviewed as a function of their spatial ordering. The different steps for the controlled production of highly-ordered nanowires is firstly described. Nanopores are formed into an hexagonal symmetry arrangement by self-organized process during anodization of pure Al. Parameters of the anodization allow us to control their diameter, hexagonal lattice parameter and size of crystalline domains. Subsequently, Ni nanowires are grown inside the pores by electrodeposition. Control of the pores filling and of geometrical ordering characteristics has been performed by SEM, HRSEM, RBS and AFM techniques. The magnetic characterisation of the arrays has been achieved by SQ...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
AbstractWereporton magnetic properties (coercive force and remanencesquareness) of Ni nanowire array...
The comparative analysis of the electrochemical deposition of Ni and Ni–Fe nanowires (NWs) into orde...
The densely packed arrays of Ni nanowires of 70 nm diameter and 6–12 μm length were obtained via ele...
The densely packed arrays of Ni nanowires of 70 nm diameter and 6 – 12 m m length were obtained via ...
High-quality and compact arrays of Ni nanowires with a high ratio (up to 700) were obtained by DC el...
Magnetic properties of Ni nanowires electrodeposited into self-assembled porous alumina arrays have ...
In order to solve the problem that the size of the synthesized metal nanowires is single and the mag...
Nickel nanowires were grown in highly ordered pore channels of an alumina membrane using pulsed elec...
Ni nanowire arrays with varying wire dimensions (diameter d, length l) and center-to-center distance...
Cylindrical Ni nanowires (NWs) were synthesized by templateassisted electrodeposition using porous a...
The magnetic response of nickel nanowires embedded in porous alumina has been investigated in a wide...
This paper examines the influence of electrodeposition potential, pore size, pH, composition, and te...
The magnetic behavior of nickel modulated nanowires embedded in porous alumina membranes is investig...
A large enhancement of the magnetic anisotropy of Ni nanowires (NWs) embedded in anodic aluminium ox...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
AbstractWereporton magnetic properties (coercive force and remanencesquareness) of Ni nanowire array...
The comparative analysis of the electrochemical deposition of Ni and Ni–Fe nanowires (NWs) into orde...
The densely packed arrays of Ni nanowires of 70 nm diameter and 6–12 μm length were obtained via ele...
The densely packed arrays of Ni nanowires of 70 nm diameter and 6 – 12 m m length were obtained via ...
High-quality and compact arrays of Ni nanowires with a high ratio (up to 700) were obtained by DC el...
Magnetic properties of Ni nanowires electrodeposited into self-assembled porous alumina arrays have ...
In order to solve the problem that the size of the synthesized metal nanowires is single and the mag...
Nickel nanowires were grown in highly ordered pore channels of an alumina membrane using pulsed elec...
Ni nanowire arrays with varying wire dimensions (diameter d, length l) and center-to-center distance...
Cylindrical Ni nanowires (NWs) were synthesized by templateassisted electrodeposition using porous a...
The magnetic response of nickel nanowires embedded in porous alumina has been investigated in a wide...
This paper examines the influence of electrodeposition potential, pore size, pH, composition, and te...
The magnetic behavior of nickel modulated nanowires embedded in porous alumina membranes is investig...
A large enhancement of the magnetic anisotropy of Ni nanowires (NWs) embedded in anodic aluminium ox...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
AbstractWereporton magnetic properties (coercive force and remanencesquareness) of Ni nanowire array...
The comparative analysis of the electrochemical deposition of Ni and Ni–Fe nanowires (NWs) into orde...