Graphene nanoribbon (GNR) with free edges can exhibit non-flat morphologies due to pre-existing edge stress. Using molecular dynamics (MD) simulations, we investigate the free-edge effect on the shape transition in GNRs with different edge types, including regular (armchair and zigzag), armchair terminated with hydrogen and reconstructed armchair. The results show that initial edge stress and energy are dependent on the edge configurations. It is confirmed that pre-strain on the free edges is a possible way to limit the random shape transition of GNRs. In addition, the influence of surface attachment on the shape transition is also investigated in this work. It is found that surface attachment can lead to periodic ripples in GNRs, dependent...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
Graphene nanoribbon (GNR) with free edges can exhibit non-flat morphologies due to pre-existing edge...
Graphene nanoribbon (GNR) with free edges demonstrates unique pre-existing edge energy and edge stre...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
We present a continuum model for spontaneous twisting of graphene nanoribbons driven by compressive...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
International audienceIt is now possible to produce graphene nanoribbons (GNRs) with atomically defi...
International audienceIt is now possible to produce graphene nanoribbons (GNRs) with atomically defi...
In this work, stability of graphene nanoribbons are investigated using molecular dynamics. Simulatio...
We examine the mechanical response of single layer graphene nanoribbons (GNR) under constant compres...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
Graphene nanoribbon (GNR) with free edges can exhibit non-flat morphologies due to pre-existing edge...
Graphene nanoribbon (GNR) with free edges demonstrates unique pre-existing edge energy and edge stre...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
We present a continuum model for spontaneous twisting of graphene nanoribbons driven by compressive...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
International audienceIt is now possible to produce graphene nanoribbons (GNRs) with atomically defi...
International audienceIt is now possible to produce graphene nanoribbons (GNRs) with atomically defi...
In this work, stability of graphene nanoribbons are investigated using molecular dynamics. Simulatio...
We examine the mechanical response of single layer graphene nanoribbons (GNR) under constant compres...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...