The periodic shell structure and surface reconstruction of metallic FePt nanoparticles with icosahedral structure has been quantitatively studied by high-resolution transmission electron microscopy with focal series reconstruction with sub-angstrom resolution. The icosahedral FePt nanoparticles fabricated by the gas phase condensation technique in vacuum have been found to be surprisingly oxidation resistant and stable under electron beam irradiation. We find the lattice spacing of (111) planes in the surface region to be size dependent and to expand by as much as 9% with respect to the bulk value of Fe(52)Pt(48). Controlled removal of the (111) surface layers in situ results in a similar outward relaxation of the new surface layer. This un...
[[abstract]]The stability during the annealing of monolayer structures and the coalescence of self-a...
Abstract Bimetallic FePt nanoparticles with L1 0 structure are attracting a lot of attention due to ...
Ligand-free FePt nanoparticles are prepared in densely packed arrays (see Figure) under ultrahigh va...
Surprisingly oxidation resistant icosahedral FePt nanoparticles showing hard-magnetic properties hav...
Shapes, surface atomic arrangement and structural evolution induced by annealing of monodisperse FeP...
[[abstract]]The superlattice structures and coalescence of self-assembled FePt nanoparticles were st...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Microanalysis techniques are used to characterize magnetic nanostructures. To advance these material...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
The state of the chemical ordering in a decahedral FePt nanoparticle was studied using aberration co...
[[abstract]]The structural stability and coalescence of self-assembled FePt monolayer nanoparticles ...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
Coupling electron microscopy techniques with insitu heating ability allows us to study phase transfo...
We have produced assemblies of FePt nanoparticles using high temperature solution phase synthesis an...
The phase transformation, coalescence, and twin structure of thermally annealed 6 nm FePt nanocrysta...
[[abstract]]The stability during the annealing of monolayer structures and the coalescence of self-a...
Abstract Bimetallic FePt nanoparticles with L1 0 structure are attracting a lot of attention due to ...
Ligand-free FePt nanoparticles are prepared in densely packed arrays (see Figure) under ultrahigh va...
Surprisingly oxidation resistant icosahedral FePt nanoparticles showing hard-magnetic properties hav...
Shapes, surface atomic arrangement and structural evolution induced by annealing of monodisperse FeP...
[[abstract]]The superlattice structures and coalescence of self-assembled FePt nanoparticles were st...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Microanalysis techniques are used to characterize magnetic nanostructures. To advance these material...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
The state of the chemical ordering in a decahedral FePt nanoparticle was studied using aberration co...
[[abstract]]The structural stability and coalescence of self-assembled FePt monolayer nanoparticles ...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
Coupling electron microscopy techniques with insitu heating ability allows us to study phase transfo...
We have produced assemblies of FePt nanoparticles using high temperature solution phase synthesis an...
The phase transformation, coalescence, and twin structure of thermally annealed 6 nm FePt nanocrysta...
[[abstract]]The stability during the annealing of monolayer structures and the coalescence of self-a...
Abstract Bimetallic FePt nanoparticles with L1 0 structure are attracting a lot of attention due to ...
Ligand-free FePt nanoparticles are prepared in densely packed arrays (see Figure) under ultrahigh va...