We propose a method to induce curvature in graphene nanoribbons in a controlled manner using an ultrathin thermoset polymer in a bimaterial strip setup and test it via molecular dynamics (MD) simulations. Continuum mechanics shows that curvature develops to release the residual stress caused by the chemical and thermal shrinkage of the polymer during processing and that this curvature increases with decreasing film thickness; however, significant deformation is only achieved for ultrathin polymer films. Quite surprisingly, explicit MD simulations of the curing and annealing processes show that the predicted trend not just continues down to film thicknesses of 1–2 nm but that the curvature development is enhanced significantly in such ultrat...
Graphene has been widely used as new generation reinforcing nanofiller to achieve significantly impr...
Graphene continues to attract considerable attention from the materials science community through it...
Flexible membranes are widely used in aerospace components when it is required to combine lightweigh...
The mechanical properties of bonded graphene ribbon were evaluated via uniaxial tensile tests by mol...
Electrically conductive, highly flexible graphene membranes hold great promise for harvesting energy...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
The elastic properties of graphene crystals have been extensively investigated, revealing unique pro...
Spatially nonuniform strain is important for engineering the pseudomagnetic field and band structure...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Graphene has exceptionally high in-plane strength, which makes it ideal for various nanomechanical a...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
Monolayer graphene is a two-dimensional honeycomb lattice of carbon atoms. It exhibits exceptional m...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Low-dimensional nanostructures are expected to have vast number of applications in the future. Part...
Graphene has been widely used as new generation reinforcing nanofiller to achieve significantly impr...
Graphene continues to attract considerable attention from the materials science community through it...
Flexible membranes are widely used in aerospace components when it is required to combine lightweigh...
The mechanical properties of bonded graphene ribbon were evaluated via uniaxial tensile tests by mol...
Electrically conductive, highly flexible graphene membranes hold great promise for harvesting energy...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
The elastic properties of graphene crystals have been extensively investigated, revealing unique pro...
Spatially nonuniform strain is important for engineering the pseudomagnetic field and band structure...
Graphene and graphene nanoplatelets can be used as filler materials especially for polymer reinforce...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Graphene has exceptionally high in-plane strength, which makes it ideal for various nanomechanical a...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
Monolayer graphene is a two-dimensional honeycomb lattice of carbon atoms. It exhibits exceptional m...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Low-dimensional nanostructures are expected to have vast number of applications in the future. Part...
Graphene has been widely used as new generation reinforcing nanofiller to achieve significantly impr...
Graphene continues to attract considerable attention from the materials science community through it...
Flexible membranes are widely used in aerospace components when it is required to combine lightweigh...