First-principles and non-equilibrium Green's function approaches are used to predict spin-polarized electronic transport in monatomic carbon chains covalently connected to graphene nanoribbons, as recently synthetized experimentally (Jin, C.; et al. Phys. Rev. Lett. 2009, 102, 205501-205504). Quantum electron conductances exhibit narrow resonant states resulting from the simultaneous presence of open conductance channels in the contact region and on the chain atoms. Odd-numbered chains, which acquire metallic or semiconducting character depending on the nature of the edge at the graphene contact, always display a net spin polarization. The combination of electrical and magnetic properties of chains and contacts results in nanodevices with i...
To realise the technological potential of subnanometer graphene junctions, there is a need to unders...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
In this study, we investigate the electron transport properties of a B-doped armchair graphene nanor...
First-principles and non-equilibrium Green’s function approaches are used to predict spin-polarized ...
First-principles and non-equilibrium Green\u2019s function approaches are used to predict spin-polar...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
An atomic carbon chain joining two graphene flakes was recently realized in a ground-breaking experi...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
It is well known that there is spin-filter efficiency (SFE) of a linear carbon atomic chain. In this...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
In this report, the electronic properties of graphene were studied with OpenMX, a software package f...
New materials and devices at nanoscale are greatly required to overcome Moore’s limits in engineerin...
New materials and devices at nanoscale are greatly required to overcome Moore’s limits in engineerin...
To realise the technological potential of subnanometer graphene junctions, there is a need to unders...
To realise the technological potential of subnanometer graphene junctions, there is a need to unders...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
In this study, we investigate the electron transport properties of a B-doped armchair graphene nanor...
First-principles and non-equilibrium Green’s function approaches are used to predict spin-polarized ...
First-principles and non-equilibrium Green\u2019s function approaches are used to predict spin-polar...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
An atomic carbon chain joining two graphene flakes was recently realized in a ground-breaking experi...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
It is well known that there is spin-filter efficiency (SFE) of a linear carbon atomic chain. In this...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
In this report, the electronic properties of graphene were studied with OpenMX, a software package f...
New materials and devices at nanoscale are greatly required to overcome Moore’s limits in engineerin...
New materials and devices at nanoscale are greatly required to overcome Moore’s limits in engineerin...
To realise the technological potential of subnanometer graphene junctions, there is a need to unders...
To realise the technological potential of subnanometer graphene junctions, there is a need to unders...
International audienceWe show theoretically that the intrinsic (phonon-limited) carrier mobility in ...
In this study, we investigate the electron transport properties of a B-doped armchair graphene nanor...