A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at a single layer on Pt foils is discussed. This self?limited growth regime is identified by direct imaging of adlayer graphene evolution using in?situ environmental scanning electron microscopy. Two fundamentally different mechanisms for adlayer nucleation are revealed. Besides primary nucleation, which is the standard nucleation that occurs only at the onset of growth, a secondary nucleation of adlayers is observed near full coverage of the substrate. Direct observation reveals layer?dependent growth kinetics and the establishment of a dynamic equilibrium between the forward reaction of carbon incorporation and the reverse reaction of graphen...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A controlled synthesis of high-quality AB-stacked bilayer graphene by chemical vapor deposition dema...
The morphology of as-grown graphene in chemical vapor deposition (CVD) experiments is sensitive to t...
The morphology of as-grown graphene in chemical vapor deposition (CVD) experiments is sensitive to t...
Graphene chemical vapor deposition (CVD) growth is the most studied method for graphene synthesis. I...
We report on in-situ graphene growth studies on nickel, copper and platinum catalysts inside a modif...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A new mechanism by which catalytic chemical vapor deposition of graphene spontaneously terminates at...
A controlled synthesis of high-quality AB-stacked bilayer graphene by chemical vapor deposition dema...
The morphology of as-grown graphene in chemical vapor deposition (CVD) experiments is sensitive to t...
The morphology of as-grown graphene in chemical vapor deposition (CVD) experiments is sensitive to t...
Graphene chemical vapor deposition (CVD) growth is the most studied method for graphene synthesis. I...
We report on in-situ graphene growth studies on nickel, copper and platinum catalysts inside a modif...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of in situ experiments for an improved understanding of graphene...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
This work highlights the importance of <i>in situ</i> experiments for an improved understanding of g...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...