Graphene is a 2-dimensional allotrope of carbon with remarkable physicochemical properties. Currently, the most promising route for commercial synthesis of graphene for technological application is chemical vapor deposition (CVD). The optimization of this chemical process will potentially enable control over crucial properties, such as graphene quality and domain size. Such optimization requires a detailed atomistic understanding of how graphene nucleation and growth take place during CVD. This mechanism depends on a multitude of synthetic parameters: temperature, CVD pressure, catalyst type, facet and phase, feedstock type, and the presence of chemical etchants, to name only a few. In this feature article, we highlight recent quantum chemi...
Chemical vapor deposition (CVD) growth of graphene on Cu(111) has been modeled with quantum chemical...
Graphene is a star material due to its intriguing electronic, mechanical, thermal and chemical prope...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...
Graphene chemical vapor deposition (CVD) growth is the most studied method for graphene synthesis. I...
© 2021 Author(s).Chemical vapor deposition (CVD) is a promising method for the mass production of hi...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
The dissociation of carbon feedstock is a crucial step for understanding the mechanism of graphene c...
Graphene, since the first successful exfoliation of graphite, has continuously attracted attention d...
Grasping the fundamentals of graphene growth is vital for graphene synthesis. By employing classical...
Graphene has attracted intense research interest due to its exotic properties and potential applicat...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Graphene's unique mechanical, electrical, and thermal properties have made it a very attractive mate...
In chemical vapor depositiongrowth, depending on the growth condition, graphene islands present vari...
Chemical vapor deposition (CVD) growth of graphene on Cu(111) has been modeled with quantum chemical...
Graphene is a star material due to its intriguing electronic, mechanical, thermal and chemical prope...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...
Graphene chemical vapor deposition (CVD) growth is the most studied method for graphene synthesis. I...
© 2021 Author(s).Chemical vapor deposition (CVD) is a promising method for the mass production of hi...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
As the most promising method for high quality, large area graphene synthesis, chemical vapor decompo...
The dissociation of carbon feedstock is a crucial step for understanding the mechanism of graphene c...
Graphene, since the first successful exfoliation of graphite, has continuously attracted attention d...
Grasping the fundamentals of graphene growth is vital for graphene synthesis. By employing classical...
Graphene has attracted intense research interest due to its exotic properties and potential applicat...
To explore the mechanism of graphene chemical vapor deposition (CVD) growth on a catalyst surface, a...
We present quantum chemical simulations demonstrating graphene precursor formation on bcc (111) tran...
Graphene's unique mechanical, electrical, and thermal properties have made it a very attractive mate...
In chemical vapor depositiongrowth, depending on the growth condition, graphene islands present vari...
Chemical vapor deposition (CVD) growth of graphene on Cu(111) has been modeled with quantum chemical...
Graphene is a star material due to its intriguing electronic, mechanical, thermal and chemical prope...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...