We describe and analyze in detail the shapes of Fe islands encapsulated under the top graphene layers in graphite. Shapes are interrogated using scanning tunneling microscopy. The main outputs of the shape analysis are the slope of the graphene membrane around the perimeter of the island, and the aspect ratio of the central metal cluster. Modeling primarily uses a continuum elasticity (CE) model. As input to the CE model, we use density functional theory to calculate the surface energy of Fe, and the adhesion energies between Fe and graphene or graphite. We use the shaft-loaded blister test (SLBT) model to provide independent stretching and bending strain energies in the graphene membrane. We also introduce a model for the elastic strain in...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Recent advances in the ability to synthesize metal-ion coagulated graphene oxide (GO) colloidal disp...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
Shapes of functional metallic nanocrystals, typically synthesized either free in solution or support...
In this paper, the authors describe the conditions under which Fe forms encapsulated nanocrystals be...
Experimental studies indicate that 3D crystalline metal nanoclusters (NCs) intercalated under the su...
We analyze the local microscopic deformation left by Au, Ag and Cu islands on carbon nanotube walls ...
The elastic properties of graphene crystals have been extensively investigated, revealing unique pro...
The geometry of two-dimensional crystalline membranes is of interest given its unique synergistic in...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
In crystal growth, surfactants are additive molecules used in dilute amount or as dense, permeable l...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
Thin membranes exhibit complex responses to external forces or geometrical constraints. A familiar e...
The operation of graphene-based nanoelectromechanical systems (NEMS) crucially depends on the local ...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Recent advances in the ability to synthesize metal-ion coagulated graphene oxide (GO) colloidal disp...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...
Shapes of functional metallic nanocrystals, typically synthesized either free in solution or support...
In this paper, the authors describe the conditions under which Fe forms encapsulated nanocrystals be...
Experimental studies indicate that 3D crystalline metal nanoclusters (NCs) intercalated under the su...
We analyze the local microscopic deformation left by Au, Ag and Cu islands on carbon nanotube walls ...
The elastic properties of graphene crystals have been extensively investigated, revealing unique pro...
The geometry of two-dimensional crystalline membranes is of interest given its unique synergistic in...
While the unique elastic properties of monolayer graphene have been extensively investigated, less k...
In crystal growth, surfactants are additive molecules used in dilute amount or as dense, permeable l...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
Thin membranes exhibit complex responses to external forces or geometrical constraints. A familiar e...
The operation of graphene-based nanoelectromechanical systems (NEMS) crucially depends on the local ...
A graphene layer on a transition-metal (TM) surface can be either corrugated or flat, depending on t...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Recent advances in the ability to synthesize metal-ion coagulated graphene oxide (GO) colloidal disp...
Understanding of the continuity and the microscopic structure of as-grown graphene on Cu foils throu...