We report a simple, clean, and highly anisotropic hydrogen etching method for chemical vapor deposited (CVD) graphene catalyzed by the copper substrate. By exposing CVD graphene on copper foil to hydrogen flow around 800 °C, we observed that the initially continuous graphene can be etched to have many hexagonal openings. In addition, we found that the etching is temperature dependent. Compared to other temperatures (700, 900, and 1000 °C), etching of graphene at 800 °C is most efficient and anisotropic. Of the angles of graphene edges after etching, 80% are 120°, indicating the etching is highly anisotropic. No increase of the D band along the etched edges indicates that the crystallographic orientation of etching is in the zigzag direction...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
Metal nanoparticles and H2 induced etching of graphene are of significant interest to synthesise gra...
H2 induced etching of graphene is of significant interest to understand graphene growth process as w...
We investigate the etching of a pure hydrogen plasma on graphite samples and graphene flakes on SiO2...
Graphene is attracting vast interest due to its superior electronic and mechanical properties. Howev...
We study the selective preparation of graphene zigzag edges by crystallographically anisotropic etch...
The extraordinary properties of graphene make it one of the most interesting materials for future ap...
Graphene growth and etching are reciprocal processes that can reach a dynamic balance during chemica...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Herein is reported a study of Co-assisted crystallographic etching of graphite in hydrogen environme...
An improved technique for transferring large area graphene grown by chemical vapor deposition on cop...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
We demonstrate a new concept of edge-epitaxial growth that enables the van der Waals (vdWs) epitaxia...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
Metal nanoparticles and H2 induced etching of graphene are of significant interest to synthesise gra...
H2 induced etching of graphene is of significant interest to understand graphene growth process as w...
We investigate the etching of a pure hydrogen plasma on graphite samples and graphene flakes on SiO2...
Graphene is attracting vast interest due to its superior electronic and mechanical properties. Howev...
We study the selective preparation of graphene zigzag edges by crystallographically anisotropic etch...
The extraordinary properties of graphene make it one of the most interesting materials for future ap...
Graphene growth and etching are reciprocal processes that can reach a dynamic balance during chemica...
Polycrystalline metal substrates such as copper (Cu) have been intensively used to grow graphene in ...
Herein is reported a study of Co-assisted crystallographic etching of graphite in hydrogen environme...
An improved technique for transferring large area graphene grown by chemical vapor deposition on cop...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
We demonstrate a new concept of edge-epitaxial growth that enables the van der Waals (vdWs) epitaxia...
We report new findings on the chemical vapor deposition (CVD) of monolayer graphene with negligible ...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...