The electric transport, magnetic, and magnetotransport properties of Fe-SiO2 nanocomposites prepared by Fe-ion implantation into silica were investigated. The structural studies revealed bcc Fe nanoparticles of an average size of 3 nm dispersed in a 100-nm-thick nanocomposite layer formed within the silica substrate. Using special thin-film electrodes that were only 100 nm apart, in-plane electrical measurements were performed in a temperature range of 4-300 K. Though no external gate electrode was used, single-electron transport phenomena (Coulomb blockade and Coulomb staircase) were observed at 4 K. The presence of Coulomb steps in I-V curves implies that the electric transport was realized by the tunneling of electrons via a random quasi...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe–Al/SiO2 granular solids prepared by ion implantatio...
The electric transport, magnetic, and magnetotransport properties of Fe-SiO2 nanocomposites prepared...
Nanometer-sized iron particles with diameters in the range 5.5-11.1 nm were grown within a silica ge...
Nanocrystalline Fe powders were synthesized by transmetallation reaction and embedded in silica to ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe\u2013Pd/SiO2 granular solids prepared by sequential...
The nanostructural and magnetic properties of Fe\u2013Al/SiO2 granular solids prepared by ion implan...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe–Al/SiO2 granular solids prepared by ion implantatio...
The electric transport, magnetic, and magnetotransport properties of Fe-SiO2 nanocomposites prepared...
Nanometer-sized iron particles with diameters in the range 5.5-11.1 nm were grown within a silica ge...
Nanocrystalline Fe powders were synthesized by transmetallation reaction and embedded in silica to ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe–Pd/SiO2 granular solids prepared by sequential ion ...
The nanostructural and magnetic properties of Fe\u2013Pd/SiO2 granular solids prepared by sequential...
The nanostructural and magnetic properties of Fe\u2013Al/SiO2 granular solids prepared by ion implan...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe-Al/SiO2 granular solids prepared by ion implantatio...
The nanostructural and magnetic properties of Fe–Al/SiO2 granular solids prepared by ion implantatio...