A comparative study of the magnetic properties of the arrays of Co nanowires and nanotubes with large external diameters (180 nm) has been carried out. The nanowires/nanotubes were grown by electrodeposition into the self-assembled pores of anodic alumina membranes. The experimental study of their magnetic behavior was focused on the angular dependence of hysteresis loops and their parameters. In both nanowire and nanotube arrays, from the analysis of experimental data, effective longitudinal magnetic anisotropy is concluded, which is stronger in the case of the nanotube array. In addition, the extremely small remanence observed for all loops indicates the important role played by magnetostatic interactions. Micromagnetic simulations were f...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Arrays of Co(100−x)Cu(x) (0 ≤ x ≤ 27) nanowires with 45 nm of diameter and 18 μm in length have been...
A comparative study of the magnetic properties of the arrays of Co nanowires and nanotubes with larg...
3 pages, 6 figures.Cobalt nanowires have been electrodeposited into the pores of AnodiscTM alumina m...
Ordered hexagonal arrays of Co nanowires (NWs) and nanotubes (NTs), with diameters between 40 and 65...
The Co nanowires with different diameters were prepared by pulsed electrodeposition into anodic alum...
Arrays of Fe-Co alloy nanowires with diameter around 35 nm and several micrometers in length have be...
The angular dependence of magnetic properties was investigated in Co nanowire (NW) array with varyin...
We report on the magnetic properties and the crystallographic structure of the cobalt nanowire array...
The magnetic properties of arrays of magnetic nanowires, prepared by electrodeposition in nanopores ...
The magnetic relaxation of Co nanowires assemblies embedded in CeO2/SrTiO3(001) epilayers has been i...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Arrays of Co(100−x)Cu(x) (0 ≤ x ≤ 27) nanowires with 45 nm of diameter and 18 μm in length have been...
A comparative study of the magnetic properties of the arrays of Co nanowires and nanotubes with larg...
3 pages, 6 figures.Cobalt nanowires have been electrodeposited into the pores of AnodiscTM alumina m...
Ordered hexagonal arrays of Co nanowires (NWs) and nanotubes (NTs), with diameters between 40 and 65...
The Co nanowires with different diameters were prepared by pulsed electrodeposition into anodic alum...
Arrays of Fe-Co alloy nanowires with diameter around 35 nm and several micrometers in length have be...
The angular dependence of magnetic properties was investigated in Co nanowire (NW) array with varyin...
We report on the magnetic properties and the crystallographic structure of the cobalt nanowire array...
The magnetic properties of arrays of magnetic nanowires, prepared by electrodeposition in nanopores ...
The magnetic relaxation of Co nanowires assemblies embedded in CeO2/SrTiO3(001) epilayers has been i...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
International audienceHigh aspect ratio nanowires were electrodeposited in nanoporous anodic alumina...
Arrays of Co(100−x)Cu(x) (0 ≤ x ≤ 27) nanowires with 45 nm of diameter and 18 μm in length have been...