We theoretically investigate the electron transport in armchair and zigzag graphene nanoribbons (GNRs) chemically functionalized withp-polyphenyl and polyacene groups of increasing length. Our nearest-neighbor tight-binding calculations indicate that, depending on whether the number of aromatic rings in the functional group is even or odd, the resulting conductance at energies matching the energy levels of the corresponding isolated molecule is either unaffected or reduced by exactly one quantum as compared to the pristine GNR, respectively. Such an even-odd effect is shown to originate from a subtle interplay between the electronic states of the guest molecule that are spatially localized on the binding sites and those of the host nanoribb...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
In molecular electronics, the conductance strongly depends on the frontier energy levels and spatial...
The atomic edges of graphene nanoribbons with anomalous geometry structure were very recently observ...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
class of molecular ribbons, with almost-ideal charge transmission, that is weakly dependent on the a...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
We report combined first-principle and tight-binding (TB) calculations to simulate the effects of ch...
On-surface synthesis has recently emerged as an effective route towards the atomically precise fabri...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
Graphene nanoribbons could potentially be used to create molecular wires with tailored conductance p...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
In molecular electronics, the conductance strongly depends on the frontier energy levels and spatial...
The atomic edges of graphene nanoribbons with anomalous geometry structure were very recently observ...
In recent years, there has been much interest in modelling graphene nanoribbons as they have great p...
class of molecular ribbons, with almost-ideal charge transmission, that is weakly dependent on the a...
We characterize the transport properties of functionalized graphene nanoribbons using extensive firs...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
The quantum transport properties of graphene nanoribbon networks are investigated using first-princi...
We report combined first-principle and tight-binding (TB) calculations to simulate the effects of ch...
On-surface synthesis has recently emerged as an effective route towards the atomically precise fabri...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
Graphene nanoribbons could potentially be used to create molecular wires with tailored conductance p...
Modulation of orbitals in molecules or bands in materials is useful to tune the electron/spin transp...
ABSTRACT: The unique ultrarelativistic, massless, nature of electron states in two-dimensional exten...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...