Bilayer graphene (BLG) exhibits unique properties depending on a stacking angle between the two layers of graphene. Although it has been known that BLGs having stacking angles of 0 degrees and 30 degrees can be obtained by chemical vapor deposition (CVD), not much is known yet about the effect of copper (Cu) surface on the decision of stacking angle, through which further fine control of the stacking angle could be possible. Here, we report that the crystal plane of Cu catalyst plays a critical role in the selection of the stacking angle of BLG, and provide experimental and computational evidence that an atomic-flat Cu (111) surface generates BLGs having 0 degrees and 30 degrees of stacking angle, while atomic-stepped Cu (311) and Cu (110) ...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
We report that the shape, orientation, edge geometry, and thickness of chemical vapor deposition gra...
© 2022 American Chemical Society. All rights reserved.Control of the stacking angle (θS) of bilayer ...
AbstractThe crystallinity of graphene flakes and their orientation with respect to the Cu(111) subst...
We show that aligned rectangular few layer graphene (FLG) domains can be produced on Cu surfaces usi...
Band gap opening in bilayer graphene (BLG) under a vertical electric field is important for the real...
We show that aligned rectangular few layer graphene (FLG) domains can be produced on Cu surfaces usi...
Manipulating the crystal orientation of emerging 2D materials via chemical vapor deposition (CVD) is...
High-quality single-layered and bilayered graphene (SLG and BLG) was synthesized on copper foil surf...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
Graphene growth by low-pressure chemical vapor deposition on low cost copper foils shows great promi...
Bilayer graphene (BLG) has emerged as a promising candidate for next-generation electronic applicati...
Graphene was synthesized on Cu foil and film by atmospheric pressure chemical vapor deposition (CVD)...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
We report that the shape, orientation, edge geometry, and thickness of chemical vapor deposition gra...
© 2022 American Chemical Society. All rights reserved.Control of the stacking angle (θS) of bilayer ...
AbstractThe crystallinity of graphene flakes and their orientation with respect to the Cu(111) subst...
We show that aligned rectangular few layer graphene (FLG) domains can be produced on Cu surfaces usi...
Band gap opening in bilayer graphene (BLG) under a vertical electric field is important for the real...
We show that aligned rectangular few layer graphene (FLG) domains can be produced on Cu surfaces usi...
Manipulating the crystal orientation of emerging 2D materials via chemical vapor deposition (CVD) is...
High-quality single-layered and bilayered graphene (SLG and BLG) was synthesized on copper foil surf...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
Graphene growth by low-pressure chemical vapor deposition on low cost copper foils shows great promi...
Bilayer graphene (BLG) has emerged as a promising candidate for next-generation electronic applicati...
Graphene was synthesized on Cu foil and film by atmospheric pressure chemical vapor deposition (CVD)...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Advances in synthesis are imperative if graphene is to fulfill its scientific and technological pote...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
We report that the shape, orientation, edge geometry, and thickness of chemical vapor deposition gra...