FePt magnetic nanoparticles are an important candidate material for many future magnetic applications. FePt exists as two main phases, that is, a disordered face-centered cubic (fcc) structure, which is generally prepared by chemical methods at low temperatures, and the high-temperature chemically ordered face-centered tetragonal (fct) structure. The fcc FePt, with low coercivity but associated with superparamagnetic properties, may find applications as a magnetic fluid or as a nanoscale carrier for chemical or biochemical species in biomedical areas, while fct FePt is proposed for use in ultrahigh-density magnetic recording applications. However, for both of these applications an enhancement of the intrinsically weak magnetic properties, t...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
We present the results of a study related to phase transformation of chemically synthesized FePt nan...
En raison de leur constante d’anisotropie magnétocristalline particulièrement élevée,les nanoparticu...
FePt magnetic nanoparticles are an important candidate material for many future magnetic application...
FePt nanoparticles, containing a near-equal atomic percentage of Fe and Pt, with a face centered te...
We report here a new synthetic route to FePt nanoparticles using a stoichiometric mixture of Na2Fe(C...
We report here a new synthetic route to FePt nanoparticles using a stoichiometric mixture of Na2Fe(C...
We report the synthesis of FePt magnetic nanoparticles using Na2Fe(CO)4 and Pt(acac)2 as reagents. T...
We report the synthesis of FePt magnetic nanoparticles using Na2Fe(CO)4 and Pt(acac)2 as reagents. T...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
Multiwalled carbon nanotubes (MWCNTs) were used as nanotemplates for the dispersion and stabilizatio...
Stoichiometric FePt nanoparticles in the tetragonal L10 phase, (Ku = 6.6?107 erg/cm3) are one of the...
Nanoparticles made of FePt alloy in a face-centered-tetragonal (fct) structure have agreat interest ...
Research on magnetic nanoparticles (NPs) has become one of the most active and exciting fields in ma...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
We present the results of a study related to phase transformation of chemically synthesized FePt nan...
En raison de leur constante d’anisotropie magnétocristalline particulièrement élevée,les nanoparticu...
FePt magnetic nanoparticles are an important candidate material for many future magnetic application...
FePt nanoparticles, containing a near-equal atomic percentage of Fe and Pt, with a face centered te...
We report here a new synthetic route to FePt nanoparticles using a stoichiometric mixture of Na2Fe(C...
We report here a new synthetic route to FePt nanoparticles using a stoichiometric mixture of Na2Fe(C...
We report the synthesis of FePt magnetic nanoparticles using Na2Fe(CO)4 and Pt(acac)2 as reagents. T...
We report the synthesis of FePt magnetic nanoparticles using Na2Fe(CO)4 and Pt(acac)2 as reagents. T...
Herein, we report magnetic properties of as-synthesized face centered cubic (fcc)-FePt nanoparticles...
Multiwalled carbon nanotubes (MWCNTs) were used as nanotemplates for the dispersion and stabilizatio...
Stoichiometric FePt nanoparticles in the tetragonal L10 phase, (Ku = 6.6?107 erg/cm3) are one of the...
Nanoparticles made of FePt alloy in a face-centered-tetragonal (fct) structure have agreat interest ...
Research on magnetic nanoparticles (NPs) has become one of the most active and exciting fields in ma...
Monodisperse FePt nanoparticles were prepared using high temperature solution phase synthesis. Polym...
Nanocomposites formed by hard and soft magnetic phases are very promising for magnetic energy storag...
We present the results of a study related to phase transformation of chemically synthesized FePt nan...
En raison de leur constante d’anisotropie magnétocristalline particulièrement élevée,les nanoparticu...