Organic spintronics is a new emerging field that promises to offer the full potential of chemistry to spintronics, as for example high versatility through chemical engineering and simple low cost processing. However, one key challenge that remains to be unlocked for further applications is the high incompatibility between spintronics key materials such as high Curie temperature Co, Ni, Fe (and their alloys) and wet chemistry. Indeed, the transition metal proneness to oxidation has so far hampered the integration of wet chemistry processes into the development of room temperature organic spintronics devices. As a result, they had mainly to rely on high vacuum physical processes, restraining the choice of available organic materials to a smal...
Spintronics is a new branch of electronics based on quantum effects. It utilizes carriers spin trans...
Molecular spintronics aims to manipulate spins by a combination of molecules and magnetic substrate....
A novel functionalization of a ferromagnetic electrode employed in spintronic devices is reported. S...
We report on graphene-passivated ferromagnetic electrodes (GPFE) for spin devices. GPFE are shown to...
We report on graphene-passivated ferromagnetic electrodes (GPFE) for spin devices. GPFE are shown to...
The growing field of molecular spintronics is an auspicious route to future concepts of data storage...
Controlling and understanding the interface formation between organic molecular layers and ferromagn...
The revolution in (semi)conducting organic materials has been one of the highlights in physics over ...
We report on graphene passivated ferromagnetic electrodes GPFE for spin devices. GPFE are shown to...
The development of chemical systems with switchable molecular spins could lead to the architecture o...
The development of chemical systems with switchable molecular spins could lead to the architecture o...
Organic-based electronic devices are rapidly increasing in popularity, making it essential to unders...
Self-assembled monolayers (SAMs) are highly promising materials for molecular engineering of electro...
Preparative chemistry combines theoretical complexity and arduous practical work in the laboratory. ...
Understanding the properties of molecules at the interface with metals is a fundamental issue for or...
Spintronics is a new branch of electronics based on quantum effects. It utilizes carriers spin trans...
Molecular spintronics aims to manipulate spins by a combination of molecules and magnetic substrate....
A novel functionalization of a ferromagnetic electrode employed in spintronic devices is reported. S...
We report on graphene-passivated ferromagnetic electrodes (GPFE) for spin devices. GPFE are shown to...
We report on graphene-passivated ferromagnetic electrodes (GPFE) for spin devices. GPFE are shown to...
The growing field of molecular spintronics is an auspicious route to future concepts of data storage...
Controlling and understanding the interface formation between organic molecular layers and ferromagn...
The revolution in (semi)conducting organic materials has been one of the highlights in physics over ...
We report on graphene passivated ferromagnetic electrodes GPFE for spin devices. GPFE are shown to...
The development of chemical systems with switchable molecular spins could lead to the architecture o...
The development of chemical systems with switchable molecular spins could lead to the architecture o...
Organic-based electronic devices are rapidly increasing in popularity, making it essential to unders...
Self-assembled monolayers (SAMs) are highly promising materials for molecular engineering of electro...
Preparative chemistry combines theoretical complexity and arduous practical work in the laboratory. ...
Understanding the properties of molecules at the interface with metals is a fundamental issue for or...
Spintronics is a new branch of electronics based on quantum effects. It utilizes carriers spin trans...
Molecular spintronics aims to manipulate spins by a combination of molecules and magnetic substrate....
A novel functionalization of a ferromagnetic electrode employed in spintronic devices is reported. S...