A series of FeCo-SiO2 nanocomposite aerogels having different FeCo loadings of 3, 5, and 8 wt % were prepared using a novel urea-assisted sol-gel route. The size of the nanoparticles, which was estimated using Scherrer analysis of the main peak of the x-ray diffraction pattern, varies from 3 to 8 nm. X-ray absorption fine structure (EXAFS) and x-ray absorption near edge structure (XANES) techniques at both Fe and Co K edges were used to investigate the structure of the FeCo nanoparticles. EXAFS and XANES show that FeCo nanoparticles have the typical bcc structure. Evidence of oxidation was observed in low FeCo content aerogels. Spatially resolved electron energy loss spectroscopy analysis suggests the formation of a passivation layer of pre...
Extended X-ray absorption fine structure and X-ray absorption near edge structure techniques were us...
FeCo-SiO2 nanocomposite aerogels were prepared by high temperature supercritical drying of alcogels ...
Nanocomposites containing FeCo alloy nanoparticles dispersed in a highly ordered cubic mesoporous si...
A series of FeCo-SiO(2) nanocomposite aerogels having different FeCo loadings of 3, 5, and 8 wt % we...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Extended X-ray absorption fine structure and X-ray absorption near edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near edge structure techniques were us...
FeCo-SiO2 nanocomposite aerogels were prepared by high temperature supercritical drying of alcogels ...
Nanocomposites containing FeCo alloy nanoparticles dispersed in a highly ordered cubic mesoporous si...
A series of FeCo-SiO(2) nanocomposite aerogels having different FeCo loadings of 3, 5, and 8 wt % we...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
The structural evolution of FeCo-SiO2 xerogel and aerogel nanocomposite samples during their sol-gel...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near-edge structure techniques were us...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Magnetic nanocomposite materials consisting of 5.5 wt% Fe-Co alloy nanoparticles in a silica aerogel...
Extended X-ray absorption fine structure and X-ray absorption near edge structure techniques were us...
Extended X-ray absorption fine structure and X-ray absorption near edge structure techniques were us...
FeCo-SiO2 nanocomposite aerogels were prepared by high temperature supercritical drying of alcogels ...
Nanocomposites containing FeCo alloy nanoparticles dispersed in a highly ordered cubic mesoporous si...