The Fe-Si binary system provides several iron silicides that have varied and exceptional material properties with applications in the electronic industry. The well known Fe-Si binary silicides are Fe3Si, Fe5Si3, FeSi, a-FeSi2 and b-FeSi2. While the iron-rich silicides Fe3Si and Fe5Si3 are known to be room temperature ferromagnets, the stoichiometric FeSi is the only known transition metal Kondo insulator. Furthermore, Fe5Si3 has also been demonstrated to exhibit giant magnetoresistance (GMR). The silicon-rich b-FeSi2 is a direct band gap material usable in light emitting diode (LED) applications. Typically, these silicides are synthesized by traditional solid-state reactions or by ion beam-induced mixing (IBM) of alternating metal and silic...
A new method for synthesis of graphene-protected iron silicides has been tested, which consists in f...
AbstractWe develop the epitaxial growth technique of ultrahigh density (>1012cm-2) iron silicide nan...
International audienceSignificance Iron silicide (FeSi) provides multiple fascinating features where...
In this article, the interplay between electronic and geometric properties in transition metal silic...
The iron silicides are considered key materials for silicon integrated optoelectronic devices. This ...
Metal silicides are complicated materials due to the complex phase behavior between metals and silic...
A simultaneous understanding of geometrical and electronic aspects of epitaxial films is crucial whe...
A simultaneous understanding of geometrical and electronic aspects of epitaxial films is crucial whe...
A systematic study of the iron¿silicon interfaces formed upon preparation of (Fe/Si) multilayers has...
Transition metal silicides have been studied extensively for many years due to their potential techn...
The low temperature form of the iron disilicide (P-FeSi2) phase has been widely shown to be a promis...
The low temperature form of the iron disilicide (P-FeSi2) phase has been widely shown to be a promis...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
A new method for synthesis of graphene-protected iron silicides has been tested, which consists in f...
The properties from both bulk phases (magnetism and thermal stability) and surface (composition, ori...
A new method for synthesis of graphene-protected iron silicides has been tested, which consists in f...
AbstractWe develop the epitaxial growth technique of ultrahigh density (>1012cm-2) iron silicide nan...
International audienceSignificance Iron silicide (FeSi) provides multiple fascinating features where...
In this article, the interplay between electronic and geometric properties in transition metal silic...
The iron silicides are considered key materials for silicon integrated optoelectronic devices. This ...
Metal silicides are complicated materials due to the complex phase behavior between metals and silic...
A simultaneous understanding of geometrical and electronic aspects of epitaxial films is crucial whe...
A simultaneous understanding of geometrical and electronic aspects of epitaxial films is crucial whe...
A systematic study of the iron¿silicon interfaces formed upon preparation of (Fe/Si) multilayers has...
Transition metal silicides have been studied extensively for many years due to their potential techn...
The low temperature form of the iron disilicide (P-FeSi2) phase has been widely shown to be a promis...
The low temperature form of the iron disilicide (P-FeSi2) phase has been widely shown to be a promis...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
A new method for synthesis of graphene-protected iron silicides has been tested, which consists in f...
The properties from both bulk phases (magnetism and thermal stability) and surface (composition, ori...
A new method for synthesis of graphene-protected iron silicides has been tested, which consists in f...
AbstractWe develop the epitaxial growth technique of ultrahigh density (>1012cm-2) iron silicide nan...
International audienceSignificance Iron silicide (FeSi) provides multiple fascinating features where...