We present ab initio calculations for spin-dependent electron transport in a molecular device constructed by two carbon chains capped with a phenyl ring, which is sandwiched between two zig-zag-edged graphene nanoribbon (ZGNR) electrodes, where the ZGNRs are modulated by external magnetic field. The coexistence of switching, dual spin-filtering effects, and negative differential resistance (NDR) in the model device is demonstrated with the theory of carbon π-electrons. Interestingly, a two-state molecular conformational switch can be realized by changing the orientation between the planes of phenyl ring and electrodes, where the majority-spin current modulation (ON/OFF ratio) is 170–479 within the considered bias window. Moreover, the devic...
The spin polarized electronic transport in a junction based on ferromagnetic (FM) zigzag graphene na...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
International audienceWe present a bias-controlled spin-filtering mechanism in spin-valves including...
We present ab initio calculations for spin-dependent electron transport in a molecular device constr...
By using density functional theory and non-equilibrium Green’s function method, we investigate the s...
Carbon-based materials are the promising candidates for the design of multifunctional spintronic dev...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
Abstract Zigzag graphene nanoribbons (ZGNRs) are expected to serve as the promising component in the...
With the advance of nanotechnology, a variety of molecules, from Single atoms to large-scale structu...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
It is well known that there is spin-filter efficiency (SFE) of a linear carbon atomic chain. In this...
A major challenge of spintronics is in generating, controlling and detecting spin-polarized current....
First-principles and non-equilibrium Green's function approaches are used to predict spin-polarized ...
International audienceWe present a bias-controlled spin-filtering mechanism in spin-valves including...
An isolated roughness at the edge of zigzag graphene nanoribbons (zGNRs) breaks the natural bipartit...
The spin polarized electronic transport in a junction based on ferromagnetic (FM) zigzag graphene na...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
International audienceWe present a bias-controlled spin-filtering mechanism in spin-valves including...
We present ab initio calculations for spin-dependent electron transport in a molecular device constr...
By using density functional theory and non-equilibrium Green’s function method, we investigate the s...
Carbon-based materials are the promising candidates for the design of multifunctional spintronic dev...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
Abstract Zigzag graphene nanoribbons (ZGNRs) are expected to serve as the promising component in the...
With the advance of nanotechnology, a variety of molecules, from Single atoms to large-scale structu...
Recent outbreaks in bottom-up chemical techniques have demonstrated the synthesis of atomically perf...
It is well known that there is spin-filter efficiency (SFE) of a linear carbon atomic chain. In this...
A major challenge of spintronics is in generating, controlling and detecting spin-polarized current....
First-principles and non-equilibrium Green's function approaches are used to predict spin-polarized ...
International audienceWe present a bias-controlled spin-filtering mechanism in spin-valves including...
An isolated roughness at the edge of zigzag graphene nanoribbons (zGNRs) breaks the natural bipartit...
The spin polarized electronic transport in a junction based on ferromagnetic (FM) zigzag graphene na...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
International audienceWe present a bias-controlled spin-filtering mechanism in spin-valves including...