The ability to couple two or more materials, exhibiting distinct properties, into a single geometry, such as core-shell nanocables, may lead to the realisation of novel multifunctional materials for applications such as spin valve systems. We discuss in this paper the use of supercritical fluid inclusion techniques for the growth of cobalt/magnetite and magnetite/cobalt core/shell nanocables within the pores of anodic aluminium oxide (AAO) membranes. These nanowires exhibit tunable magnetic properties which are dominated by the core material
As the field of nanotechnology continues to advance and device feature sizes scale down to ever smal...
Electrodeposition is a widely used materials-deposition technology with a number of unique features,...
Nanostructures like nanowires, nanorods, nanotubes and nanodots have generated interest for engineer...
Magnetically tunable, high-density arrays of coaxial nanocables within anodic aluminum oxide (AAO) m...
The compositional structure of high density arrays of coaxial nanocables, consisting of germanium na...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
This paper describes how the specific properties of supercritical fluids have been exploited in the ...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
A straightforward method for the synthesis of CoFe2.7/CoFe2O4 core/shell nanowires is described. The...
We have synthesized nanowires with an iron core and an iron oxide (magnetite) shell by a facile low-...
International audienceA major challenge in the development of efficient magnetoelectric nanocomposit...
Mesoporous alumina membranes ("anodic aluminium oxide", or "AAO") are made by anodic oxidation of al...
(Fe, Ni, CoFe) @ Au core-shell magnetic nanowires have been synthesized by optimized two-step potent...
This chapter describes how the specific properties of supercritical fluids have been exploited in th...
As the field of nanotechnology continues to advance and device feature sizes scale down to ever smal...
Electrodeposition is a widely used materials-deposition technology with a number of unique features,...
Nanostructures like nanowires, nanorods, nanotubes and nanodots have generated interest for engineer...
Magnetically tunable, high-density arrays of coaxial nanocables within anodic aluminum oxide (AAO) m...
The compositional structure of high density arrays of coaxial nanocables, consisting of germanium na...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
We have explored the synthesis of iron oxide particles, tubes, and fibrils within the pores of nanop...
This paper describes how the specific properties of supercritical fluids have been exploited in the ...
Recently, nanowire arrays of Fe-Co were being studied as potential materials for high-density magnet...
A straightforward method for the synthesis of CoFe2.7/CoFe2O4 core/shell nanowires is described. The...
We have synthesized nanowires with an iron core and an iron oxide (magnetite) shell by a facile low-...
International audienceA major challenge in the development of efficient magnetoelectric nanocomposit...
Mesoporous alumina membranes ("anodic aluminium oxide", or "AAO") are made by anodic oxidation of al...
(Fe, Ni, CoFe) @ Au core-shell magnetic nanowires have been synthesized by optimized two-step potent...
This chapter describes how the specific properties of supercritical fluids have been exploited in th...
As the field of nanotechnology continues to advance and device feature sizes scale down to ever smal...
Electrodeposition is a widely used materials-deposition technology with a number of unique features,...
Nanostructures like nanowires, nanorods, nanotubes and nanodots have generated interest for engineer...