Magnetically tunable, high-density arrays of coaxial nanocables within anodic aluminum oxide (AAO) membranes have been synthesized. The nanocables consist of magnetite nanowires surrounded by cobalt nanotube sheaths and cobalt nanowires surrounded by magnetite nanotube sheaths. These materials are a combination of separate hard (Co) and soft (Fe3O4) magnetic materials in a single nanocable structure. The combination of two or more magnetic materials in such a radial structure is seen as a very powerful tool for the future fabrication of magnetoresistive, spin-valve and ultrafast spin-injection devices with nonplanar geometries. The nanocable arrays were prepared using a supercritical-fluid inclusion process, whereby the nanotube was first d...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Ordered arrays of nickel nanowires covered by polystyrene nanotubes have been synthesized for the fi...
International audienceA major challenge in the development of efficient magnetoelectric nanocomposit...
The ability to couple two or more materials, exhibiting distinct properties, into a single geometry,...
The projects which were undertaken under the scope of this work consisted of two themes (a) patterne...
The project which was undertaken under the scope of this work was the chemical synthesis of nanomagn...
A reliable and flexible synthesis route was used for processing high density Ni–BaTiO3 nanocable arr...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
Abstract A new preparation method of three-layer coaxial nanocables has been developed in this work....
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Nanostructures like nanowires, nanorods, nanotubes and nanodots have generated interest for engineer...
We present the synthesis and magnetic properties of Co nanorods spontaneously organized in superlatt...
3 pages, 6 figures.Cobalt nanowires have been electrodeposited into the pores of AnodiscTM alumina m...
An approach to fabricate ferromagnetic/polymer composite nanotubes has been developed. The surfaces ...
Electrochemical deposition is a versatile technique that has been employed to synthesize various typ...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Ordered arrays of nickel nanowires covered by polystyrene nanotubes have been synthesized for the fi...
International audienceA major challenge in the development of efficient magnetoelectric nanocomposit...
The ability to couple two or more materials, exhibiting distinct properties, into a single geometry,...
The projects which were undertaken under the scope of this work consisted of two themes (a) patterne...
The project which was undertaken under the scope of this work was the chemical synthesis of nanomagn...
A reliable and flexible synthesis route was used for processing high density Ni–BaTiO3 nanocable arr...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
Abstract A new preparation method of three-layer coaxial nanocables has been developed in this work....
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Nanostructures like nanowires, nanorods, nanotubes and nanodots have generated interest for engineer...
We present the synthesis and magnetic properties of Co nanorods spontaneously organized in superlatt...
3 pages, 6 figures.Cobalt nanowires have been electrodeposited into the pores of AnodiscTM alumina m...
An approach to fabricate ferromagnetic/polymer composite nanotubes has been developed. The surfaces ...
Electrochemical deposition is a versatile technique that has been employed to synthesize various typ...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
Ordered arrays of nickel nanowires covered by polystyrene nanotubes have been synthesized for the fi...
International audienceA major challenge in the development of efficient magnetoelectric nanocomposit...