The elastic properties of graphene crystals have been extensively investigated, revealing unique properties in the linear and nonlinear regimes, when the membranes are under either stretching or bending loading conditions. Nevertheless less knowledge has been developed so far on folded graphene membranes and ribbons. It has been recently suggested that fold-induced curvatures, without in-plane strain, can affect the local chemical reactivity, the mechanical properties, and the electron transfer in graphene membranes. This intriguing perspective envisages a materials-by-design approach through the engineering of folding and bending to develop enhanced nano-resonators or nano-electro-mechanical devices. Here we present a novel methodology to ...
This thesis concerns describing the mechanical properties of the two dimensional material graphene b...
The geometry of two-dimensional crystalline membranes is of interest given its unique synergistic in...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
Low-dimensional nanostructures are expected to have vast number of applications in the future. Part...
Graphene, an ideal two-dimensional membrane, has interesting electronic, optical, mechanical, and th...
Graphene, an ideal two-dimensional membrane, has interesting electronic, optical, mechanical, and th...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Research on nanomembranes and graphene sheets represents the "third wave" of work on nanomaterials, ...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
The mechanical properties of nanomaterials can be strongly affected by their crystal structures and ...
This thesis concerns describing the mechanical properties of the two dimensional material graphene b...
The geometry of two-dimensional crystalline membranes is of interest given its unique synergistic in...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
Low-dimensional nanostructures are expected to have vast number of applications in the future. Part...
Graphene, an ideal two-dimensional membrane, has interesting electronic, optical, mechanical, and th...
Graphene, an ideal two-dimensional membrane, has interesting electronic, optical, mechanical, and th...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
Research on nanomembranes and graphene sheets represents the "third wave" of work on nanomaterials, ...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
Classical continuum mechanics is used extensively to predict the properties of nanoscale materials s...
The mechanical properties of nanomaterials can be strongly affected by their crystal structures and ...
This thesis concerns describing the mechanical properties of the two dimensional material graphene b...
The geometry of two-dimensional crystalline membranes is of interest given its unique synergistic in...
The mechanical properties of ultrathin membranes have attracted considerable attention recently. Nan...