We report an atomically resolved scanning tunneling microscopy investigation of the edges of graphene grains synthesized on Cu foils by chemical vapor deposition. Most of the edges are macroscopically parallel to the zigzag directions of graphene lattice. These edges have microscopic roughness that is found to also follow zigzag directions at atomic scale, displaying many similar to 120 degrees turns. A prominent standing wave pattern with periodicity similar to 3a/4 (a being the graphene lattice constant) is observed near a rare-occurring armchair-oriented edge. Observed features of this wave pattern are consistent with the electronic intervalley backscattering predicted to occur at armchair edges but not at zigzag edges
The atomic configuration of graphene edges significantly influences the various properties of graphe...
We have investigated the effects of thermal annealing on ex-situ chemically vapor deposited submonol...
My primary goal was to perform an in depth characterisation of the atomic structure of graphene edge...
We use scanning tunneling microscopy and spectroscopy to examine the electronic nature of grain boun...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Low-temperature scanning tunneling microscopy measurements and first-principles calculations are emp...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We report on the scanning tunneling microscopy study of a new class of corrugations in exfoliated mo...
Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) images of graphene reveal eith...
We report on the scanning tunneling microscopy study of a new class of corrugations in exfoliated mo...
We study theoretically the coherent electron focusing in graphene nanoribbons. Using semiclassical a...
The atomic configuration of graphene edges significantly influences the various properties of graphe...
We have investigated the effects of thermal annealing on ex-situ chemically vapor deposited submonol...
My primary goal was to perform an in depth characterisation of the atomic structure of graphene edge...
We use scanning tunneling microscopy and spectroscopy to examine the electronic nature of grain boun...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
We conducted atomic-scale scanning tunneling microscopy of a graphene nanosheet on graphite. In addi...
Zigzag edges of graphene nanostructures host localized electronic states that are predicted to be sp...
Low-temperature scanning tunneling microscopy measurements and first-principles calculations are emp...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We study a crystallographic etching process of graphene nanostructures, where zigzag edges can be pr...
We report on the scanning tunneling microscopy study of a new class of corrugations in exfoliated mo...
Scanning tunneling microscopy (STM) and atomic force microscopy (AFM) images of graphene reveal eith...
We report on the scanning tunneling microscopy study of a new class of corrugations in exfoliated mo...
We study theoretically the coherent electron focusing in graphene nanoribbons. Using semiclassical a...
The atomic configuration of graphene edges significantly influences the various properties of graphe...
We have investigated the effects of thermal annealing on ex-situ chemically vapor deposited submonol...
My primary goal was to perform an in depth characterisation of the atomic structure of graphene edge...