AbstractTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that manifest themselves as strong height fluctuations (ripples). In order to control the ripples, their relationship with external strain needs to be established. We therefore perform molecular dynamics (MD) of suspended graphene, by the use of a newly developed force field model (MMP) that we prove to be extremely accurate for both C Diamond and Graphene. The MMP potential successfully reproduces the energy of the σ-bonds in both sp3 and sp2 configuration. Our MD simulations and experimental electron microscopy analysis reveal that ordered and static ripples form spontaneously as a direct response to external pressure. Furthermore the morphology ...
Graphene has been investigated intensively since its discovery in 2004, for its unique mechanical ...
We investigated the effect of out-of-plane crumpling on the mechanical response of graphene membrane...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
peer-reviewedTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations t...
AbstractTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that m...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
We study the dispersion characteristics of strained graphene using many-body interatomic potentials ...
The effect of intrinsic ripples on the mechanical response of the graphene monolayer is investigated...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
Graphene has a great potential to replace silicon in prospective semiconductor industries due to its...
Graphene is a one atom thick layer of carbon atoms arranged in hexagonal lattice in two-dimensions. ...
Ripples present in free standing graphene have an important influence on the mechanical behavior of ...
Graphene samples supported on a substrate often exhibit out-of-plane deformations with different fea...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We explore here the structural stability and fracture of supported graphene sheets under pressure lo...
Graphene has been investigated intensively since its discovery in 2004, for its unique mechanical ...
We investigated the effect of out-of-plane crumpling on the mechanical response of graphene membrane...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
peer-reviewedTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations t...
AbstractTwo-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that m...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
We study the dispersion characteristics of strained graphene using many-body interatomic potentials ...
The effect of intrinsic ripples on the mechanical response of the graphene monolayer is investigated...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
Graphene has a great potential to replace silicon in prospective semiconductor industries due to its...
Graphene is a one atom thick layer of carbon atoms arranged in hexagonal lattice in two-dimensions. ...
Ripples present in free standing graphene have an important influence on the mechanical behavior of ...
Graphene samples supported on a substrate often exhibit out-of-plane deformations with different fea...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
We explore here the structural stability and fracture of supported graphene sheets under pressure lo...
Graphene has been investigated intensively since its discovery in 2004, for its unique mechanical ...
We investigated the effect of out-of-plane crumpling on the mechanical response of graphene membrane...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...