We performed an investigation concerning bipolaron dynamics in armchair graphene nanoribbons (AGNRs) under the influence of different electric fields and electron–phonon coupling regimes. By studying the response to the electric field, we determined the effective mass and terminal velocity of this quasiparticle in AGNRs. Remarkably, bipolarons in narrower AGNRs move as fast as the ones in conjugated polymers. Our findings pave the way to enhance the understanding of the behavior of charge carriers in graphene nanoribbons
Graphene nanoribbons (GNRs) are promising quasi-one-dimensional materials with various technological...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...
The dynamical properties of polarons in armchair graphene nanoribbons (GNR) is numerically investiga...
Graphene nanoribbons (GNRs) are two-dimensional structures with a rich variety of electronic propert...
The field-induced dynamics of polarons in armchair graphene nanoribbons (GNRs) is theoretically inve...
An important aspect concerning the performance of armchair graphene nanoribbons (AGNRs) as materials...
By means of a 2-D tight-binding model with lattice relaxation in a first-order expansion, we report ...
In this paper we discuss the study of charge transport in an armchair graphene nanoribbon drivenby a...
From the moment atomic precision control of the growth process of graphene was achieved, more elabor...
: Motivated by the success of graphene in flat optoelectronics, several carbon allotropes have recen...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
We investigate, in the framework of macroscopic Dirac model, the spectrum, charge density and conduc...
The electronic and thermal properties of AB-stacked bilayer graphene nanoribbons subject to the infl...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
Graphene nanoribbons (GNRs) are promising quasi-one-dimensional materials with various technological...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...
The dynamical properties of polarons in armchair graphene nanoribbons (GNR) is numerically investiga...
Graphene nanoribbons (GNRs) are two-dimensional structures with a rich variety of electronic propert...
The field-induced dynamics of polarons in armchair graphene nanoribbons (GNRs) is theoretically inve...
An important aspect concerning the performance of armchair graphene nanoribbons (AGNRs) as materials...
By means of a 2-D tight-binding model with lattice relaxation in a first-order expansion, we report ...
In this paper we discuss the study of charge transport in an armchair graphene nanoribbon drivenby a...
From the moment atomic precision control of the growth process of graphene was achieved, more elabor...
: Motivated by the success of graphene in flat optoelectronics, several carbon allotropes have recen...
We investigate magnetotransport through graphene nanoribbons as a function of gate and bias voltage,...
The successful use of graphene nanoribbons (GNRs) in a variety of applications in nanoelectronics de...
We investigate, in the framework of macroscopic Dirac model, the spectrum, charge density and conduc...
The electronic and thermal properties of AB-stacked bilayer graphene nanoribbons subject to the infl...
Using first-principles quantum transport simulations, this work examines changes in the total elect...
Graphene nanoribbons (GNRs) are promising quasi-one-dimensional materials with various technological...
By employing a self-consistent approach, we reveal a number of unique properties of zigzag graphene ...
The dynamical properties of polarons in armchair graphene nanoribbons (GNR) is numerically investiga...