Technological procedures able to produce high quality electrodes from magnetic oxides in vertical organic-inorganic hybrid devices is a challenging task in the field of organic spintronics. Thin films of magnetite (Fe3O4) have been successfully grown directly on top of organic semiconductor layers, tris(8-hydroxyquinoline)aluminium(III) (Alq3), by pulsed-electron ablation technique. The films show ferromagnetic behavior and good structural quality, properties detected by magneto-optical Kerr effect, superconductor quantum interference device, micro-Raman spectroscopy, and Atomic Force Microscopy. The ferromagnetic behavior persists even for 10 nm thick films. Charge injection at magnetite-organic interface has been finally demonstrated by d...
In this paper, we demonstrate that films of magnetite, Fe3O4, can be deposited by the electrochemica...
The present thesis is concerned with molecular beam epitaxy of magnetite (Fe3O4) thin films on semic...
Compared to inorganic materials, organic materials are environmentally friendly, flexible, and often...
We report on the magnetic properties of hybrid bilayers constituted by magnetite (Fe3O4) films, with...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
Organic semiconductors are considered as attractive materials for spintronic applications. One of th...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
Currently, there is an enormous need for flexible electronic devices given their astonishing compete...
Continuing initiatives to deploy radical new computing schemes impel the study of new materials syst...
Organic-based magnets are intriguing materials with unique magnetic and electronic properties that c...
Thin film of Fe(TCNQ:tetracyanoquinodimethane)x???2 that exhibits both ferromagnetic and semiconduct...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Organic-based magnets are intriguing materials with unique magnetic and electronic properties that c...
The interface between the organic semiconductor tris(8-hydrixyquinolate) aluminium (Alq3) and two di...
The new paradigm of electronics, 'spintronics', promises to extend the functionality of information ...
In this paper, we demonstrate that films of magnetite, Fe3O4, can be deposited by the electrochemica...
The present thesis is concerned with molecular beam epitaxy of magnetite (Fe3O4) thin films on semic...
Compared to inorganic materials, organic materials are environmentally friendly, flexible, and often...
We report on the magnetic properties of hybrid bilayers constituted by magnetite (Fe3O4) films, with...
Magnetite (Fe3O4) is of both scientific and technological interest because of its fascinating magnet...
Organic semiconductors are considered as attractive materials for spintronic applications. One of th...
This report is on the growth of Fe3O4 nanofilms on Al2O3(0001) and MgO(001) substrates with and with...
Currently, there is an enormous need for flexible electronic devices given their astonishing compete...
Continuing initiatives to deploy radical new computing schemes impel the study of new materials syst...
Organic-based magnets are intriguing materials with unique magnetic and electronic properties that c...
Thin film of Fe(TCNQ:tetracyanoquinodimethane)x???2 that exhibits both ferromagnetic and semiconduct...
Magnetite (Fe3O4) of high quality was prepared by combining atomic layer deposition (ALD) with a sub...
Organic-based magnets are intriguing materials with unique magnetic and electronic properties that c...
The interface between the organic semiconductor tris(8-hydrixyquinolate) aluminium (Alq3) and two di...
The new paradigm of electronics, 'spintronics', promises to extend the functionality of information ...
In this paper, we demonstrate that films of magnetite, Fe3O4, can be deposited by the electrochemica...
The present thesis is concerned with molecular beam epitaxy of magnetite (Fe3O4) thin films on semic...
Compared to inorganic materials, organic materials are environmentally friendly, flexible, and often...