AbstractStrain-induced, self-assembled iron silicide nanostructures were grown on Si(001) substrate by reactive deposition epitaxy. The phases and structures were characterized by scanning- and transmission electron microscopy, atomic force microscopy, and by Fourier transform infrared spectroscopy. The electrical characteristics were investigated by I–V and C–V measurements and the point defects were measured by DLTS. The size and shape of the nanoislands depended on the initial Fe thickness and on the annealing. Coexistence of different iron silicide phases was detected. Electrical characteristics show large defect concentration related to Fe
Iron and vanadium silicide films have been grown epitaxially on silicon substrates by solid phase ep...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...
AbstractStrain-induced, self-assembled iron silicide nanostructures were grown on Si(001) substrate ...
Iron silicide particles were grown on Si(100) by reactive deposition epitaxy. By maintaining the thi...
Strain-induced, self-assembled iron silicide nanostructures were grown on Si(001) substrate by conve...
A special type of epitaxial growth appears during solid phase thin film reactions, where the reacti...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
We systematically studied the formation of various iron-silicide phases, grown on Si(001) surfaces b...
In this paper, we report a kind of novel belt-like nanostructure of iron silicide, which we call nan...
AbstractWe develop the epitaxial growth technique of ultrahigh density (>1012cm-2) iron silicide nan...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
Iron and vanadium silicide films have been grown epitaxially on silicon substrates by solid phase ep...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...
AbstractStrain-induced, self-assembled iron silicide nanostructures were grown on Si(001) substrate ...
Iron silicide particles were grown on Si(100) by reactive deposition epitaxy. By maintaining the thi...
Strain-induced, self-assembled iron silicide nanostructures were grown on Si(001) substrate by conve...
A special type of epitaxial growth appears during solid phase thin film reactions, where the reacti...
In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with ch...
We systematically studied the formation of various iron-silicide phases, grown on Si(001) surfaces b...
In this paper, we report a kind of novel belt-like nanostructure of iron silicide, which we call nan...
AbstractWe develop the epitaxial growth technique of ultrahigh density (>1012cm-2) iron silicide nan...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
The growth of Fe on Si(111)(7 x 7) has been studied by scanning tunneling microscopy as a function o...
Iron and vanadium silicide films have been grown epitaxially on silicon substrates by solid phase ep...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...
Growth, thermal reaction, and crystalline structure of ultrathin iron silicide films on Si(111) are ...