Three key positions of graphene on a catalyst surface can be identified based on precise computations, namely as <i>sunk</i> (<b>S</b>), <i>step-attached</i> (<b>SA</b>), and <i>on-terrace</i> (<b>OT</b>). Surprisingly, the preferred modes are not all alike but vary from metal to metal, depending on the energies of graphene-edge “wetting” by the catalyst: on a catalyst surface of soft metal like Au(111), Cu(111) or Pd(111), the graphene tends to grow in step-attached or embedded mode, while on a rigid catalyst surface such as Pt(111), Ni(111), Rh(111), Ir(111), or Ru(0001), graphene prefers growing as step-attached or on-terrace. Accordingly, as further energy analysis shows, the graphene formed via the <b>S</b> and <b>SA</b> modes should h...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
Three key positions of graphene on a catalyst surface can be identified based on precise computation...
Three key positions of graphene on a catalyst surface can be identified based on precise computation...
We present a theoretical study on the determination of graphene orientation on the catalyst surface ...
We present a theoretical study on the determination of graphene orientation on the catalyst surface ...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
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...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
We demonstrate a new concept of edge-epitaxial growth that enables the van der Waals (vdWs) epitaxia...
Manipulating the crystal orientation of emerging 2D materials via chemical vapor deposition (CVD) is...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...
Three key positions of graphene on a catalyst surface can be identified based on precise computation...
Three key positions of graphene on a catalyst surface can be identified based on precise computation...
We present a theoretical study on the determination of graphene orientation on the catalyst surface ...
We present a theoretical study on the determination of graphene orientation on the catalyst surface ...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
The chemical vapour deposition (CVD) growth of graphene is normally an epitaxial process, where the ...
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...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
We demonstrate a new concept of edge-epitaxial growth that enables the van der Waals (vdWs) epitaxia...
Manipulating the crystal orientation of emerging 2D materials via chemical vapor deposition (CVD) is...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
To understand the origin of the triangular shaped graphene, we systematically investigated the therm...
Grain boundaries (GBs) in graphene prepared by chemical vapor deposition (CVD) greatly degrade the e...