Stable iron nanoparticles have been synthesised by the decomposition of {Fe(N[Si(CH(3))(3)](2))(2)}(2) under dihydrogen pressure. Those conditions lead to a system of monodisperse and metallic nanoparticles which diameter is less than 2 nm and stabilized by HN[Si(CH(3))(3)](2). The magnetization is found to be M(S)=1.92 mu(B)/at., i.e., 10% lower than the bulk value. The Mossbauer spectrum is fitted by two contributions of metallic iron. The magnetic anisotropy energy constant increases up to 5.2x10(5) J/m(3), i.e., ten times the bulk one
Powder mixtures of (FeyN)(x) and (Al2O3)(1-x) or (SiO2)(1-x) with x = 0.2 and 0.6 and y = 3.8 have b...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
Iron nanostructures with morphology ranging from discrete nanoparticles to nearly monodisperse hiera...
Stable iron nanoparticles have been synthesised by the decomposition of {Fe(N[Si(CH(3))(3)](2))(2)}(...
Stable iron nanoparticles have been synthesised by the decomposition of {Fe (N [Si (C H3)3] 2)2 }2 u...
Fe0:8Rh0:2 nanoparticles with an average size of 1.8 nm have been synthesized by simultaneous decomp...
The results of the investigation of the structural and magnetic (static and dynamic) properties of a...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
Iron particles of diameters in the range 5.5-8.5 nm have been synthesized within a suitably chosen o...
Size-controlled Fe nanoparticles have been obtained by thermal decomposition of Fe(CO)5 in organic s...
International audienceWe report on the magnetic and hyperthermia properties of 5.5 nm in diameter ir...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
A novel synthetic method for the production of highly magnetic, low size-dispersity nanoparticles th...
International audienceTo shed light on the factors governing the stability and surface properties of...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Powder mixtures of (FeyN)(x) and (Al2O3)(1-x) or (SiO2)(1-x) with x = 0.2 and 0.6 and y = 3.8 have b...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
Iron nanostructures with morphology ranging from discrete nanoparticles to nearly monodisperse hiera...
Stable iron nanoparticles have been synthesised by the decomposition of {Fe(N[Si(CH(3))(3)](2))(2)}(...
Stable iron nanoparticles have been synthesised by the decomposition of {Fe (N [Si (C H3)3] 2)2 }2 u...
Fe0:8Rh0:2 nanoparticles with an average size of 1.8 nm have been synthesized by simultaneous decomp...
The results of the investigation of the structural and magnetic (static and dynamic) properties of a...
In this work, the reduction of iron oxide γ-Fe2O3 nanoparticles by hydrogen at high pressures is stu...
Iron particles of diameters in the range 5.5-8.5 nm have been synthesized within a suitably chosen o...
Size-controlled Fe nanoparticles have been obtained by thermal decomposition of Fe(CO)5 in organic s...
International audienceWe report on the magnetic and hyperthermia properties of 5.5 nm in diameter ir...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
A novel synthetic method for the production of highly magnetic, low size-dispersity nanoparticles th...
International audienceTo shed light on the factors governing the stability and surface properties of...
Typical synthesis of α″-Fe16N2 nanoparticles involves reduction of iron oxides by hydrogen at elevat...
Powder mixtures of (FeyN)(x) and (Al2O3)(1-x) or (SiO2)(1-x) with x = 0.2 and 0.6 and y = 3.8 have b...
The work presents structural and magnetic properties of ultrasmall magnetic nanoparticles consisting...
Iron nanostructures with morphology ranging from discrete nanoparticles to nearly monodisperse hiera...