AbstractThe separated CoPt nano-size islands were fabricated on amorphous glass substrates in this work. The microstructures and magnetic properties of CoPt thin films with thicknesses between 1 and 20nm after annealing at 700°C for 30minutes were investigated. The morphology of CoPt thin film would change from a well-distributed and discontinuous nano-size CoPt islands into a continuous one as increasing the film thickness from 1 to 20nm. The formation mechanism of the CoPt islands may be due to the surface energy difference between the glass substrate and CoPt alloy. This nano-size CoPt thin film may be a good candidate for ultra-high density magnetic recording media
We have prepared nanometer-size, isolated CoPt particles. The particles in the range of 100–300 nm i...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
NdFeB permanent-magnet films, CoCrPt magnetic recording media, Co:C nanocomposite films, and CoPt:C ...
AbstractThe separated CoPt nano-size islands were fabricated on amorphous glass substrates in this w...
Magnetic CoPt nanoparticles in the ordered L10 phase have recently been fabricated primarily for use...
Hadjipanayis, George C.L10 CoPt nanoparticles have very high magnetocrystalline energy that makes th...
The present study describes the properties of magnetically hard Co50Pt50 ordered sub-micron structur...
The nanostructure and magnetic properties of composite CoPt:C films at room temperature were investi...
The nanostructure and magnetic properties of composite CoPt:C films at room temperature were investi...
In this study, we showed that a magnetic coercivity (Hc) as high as 37 kOe was obtained in a CoPt th...
Perpendicular magnetic nanostructures have played an important role in magnetic recording technologi...
L11-CoPt(1 1 1) films were successfully fabricated on glass substrates at 300-400 °C, using Pt(1 1 1...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
NdFeB permanent-magnet films, CoCrPt magnetic recording media, Co:C nanocomposite films, and CoPt:C ...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
We have prepared nanometer-size, isolated CoPt particles. The particles in the range of 100–300 nm i...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
NdFeB permanent-magnet films, CoCrPt magnetic recording media, Co:C nanocomposite films, and CoPt:C ...
AbstractThe separated CoPt nano-size islands were fabricated on amorphous glass substrates in this w...
Magnetic CoPt nanoparticles in the ordered L10 phase have recently been fabricated primarily for use...
Hadjipanayis, George C.L10 CoPt nanoparticles have very high magnetocrystalline energy that makes th...
The present study describes the properties of magnetically hard Co50Pt50 ordered sub-micron structur...
The nanostructure and magnetic properties of composite CoPt:C films at room temperature were investi...
The nanostructure and magnetic properties of composite CoPt:C films at room temperature were investi...
In this study, we showed that a magnetic coercivity (Hc) as high as 37 kOe was obtained in a CoPt th...
Perpendicular magnetic nanostructures have played an important role in magnetic recording technologi...
L11-CoPt(1 1 1) films were successfully fabricated on glass substrates at 300-400 °C, using Pt(1 1 1...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
NdFeB permanent-magnet films, CoCrPt magnetic recording media, Co:C nanocomposite films, and CoPt:C ...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
We have prepared nanometer-size, isolated CoPt particles. The particles in the range of 100–300 nm i...
Nanostructured magnetic materials have unique properties that are different from bulk materials. The...
NdFeB permanent-magnet films, CoCrPt magnetic recording media, Co:C nanocomposite films, and CoPt:C ...