Spherical carbon coated iron particles of nanometric diameter in the 510 nm range have been produced by arc discharge at near-atmospheric pressure conditions (using 58·10 4 Pa of He). The particles exhibit a crystalline dense iron core with an average diameter 7.4 ± 2.0 nm surrounded by a sealed carbon shell, shown by transmission electron microscopy (TEM), selected-area diffrac- tion (SAED), energy-dispersive X-ray analysis (STEM-EDX) and electron energy loss spectroscopy (EELS). The SAED, EDX and EELS results indicate a lack of traces of core oxidized phases showing an efficient protection role of the carbon shell. The magnetic properties of the nanoparticles have been investigated in the 5300 K temperature range using a superconducting q...
We succeeded in the arc-plasma synthesis of carbon-encapsulated Fe, Cr, and Mn-based nanoparticles. ...
Iron particles, encapsulated by graphite layers, were produced by means of the Kratschmer arc discha...
A method for isolating single crystalline sub-5 nm carbon coated iron nanoparticles (Fe@C NPs) from ...
The objective of the present work is to improve the protection against the oxidation that usually ap...
The objective of the present work is to improve the protection against the oxidation that usually ap...
The objective of the present work is to improve the protection against the oxidation that usually ap...
Iron particles encaged in carbon nanocapsules have been produced by the Krätschmer–Huffmann carbon-a...
Core–shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
Size control of core@shell nanostructures is still a challenge. Carbon encapsulated iron nanoparticl...
Core-shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
Size control of core@shell nanostructures is still a challenge. Carbon encapsulated iron nanoparticl...
Shell-core structures of Fe(C), Co(C) and Fe-Co(C) nanocapsules, prepared by an are discharge proces...
Nanoparticles composed of iron and carbon have been produced by chemical vapor synthesis. A detailed...
Nanoparticles composed of iron and carbon have been produced by chemical vapor synthesis. A detailed...
Core-shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
We succeeded in the arc-plasma synthesis of carbon-encapsulated Fe, Cr, and Mn-based nanoparticles. ...
Iron particles, encapsulated by graphite layers, were produced by means of the Kratschmer arc discha...
A method for isolating single crystalline sub-5 nm carbon coated iron nanoparticles (Fe@C NPs) from ...
The objective of the present work is to improve the protection against the oxidation that usually ap...
The objective of the present work is to improve the protection against the oxidation that usually ap...
The objective of the present work is to improve the protection against the oxidation that usually ap...
Iron particles encaged in carbon nanocapsules have been produced by the Krätschmer–Huffmann carbon-a...
Core–shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
Size control of core@shell nanostructures is still a challenge. Carbon encapsulated iron nanoparticl...
Core-shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
Size control of core@shell nanostructures is still a challenge. Carbon encapsulated iron nanoparticl...
Shell-core structures of Fe(C), Co(C) and Fe-Co(C) nanocapsules, prepared by an are discharge proces...
Nanoparticles composed of iron and carbon have been produced by chemical vapor synthesis. A detailed...
Nanoparticles composed of iron and carbon have been produced by chemical vapor synthesis. A detailed...
Core-shell nanostructures of carbon encapsulated iron nanoparticles (CEINPs) show unique properties ...
We succeeded in the arc-plasma synthesis of carbon-encapsulated Fe, Cr, and Mn-based nanoparticles. ...
Iron particles, encapsulated by graphite layers, were produced by means of the Kratschmer arc discha...
A method for isolating single crystalline sub-5 nm carbon coated iron nanoparticles (Fe@C NPs) from ...