By using density-functional theory (DFT) calculations, the dissociation of CH on various metal surfaces, including Ni, Cu, Ru, Pd, Pt, Ir, Co, Au, and Rh, is systematically explored. For all the explored face-centered cubic (fcc) metal substrates, the (100) surface is found to be more active than the (111) surface, which explains the higher activity of the (100) surface in graphene chemical vapor deposition (CVD) growth. The catalytic activity order of these metals is found to be Ni ≈ Rh ≈ Co ≈ Ru > Pd ≈ Pt ≈ Ir > Cu > Au, which explained the catalyst type dependent growth behavior of graphene. It was found that the main dissociation product of CH on Ni, Pd, Pt, Ir, Rh, Co, and Ru substrates is a carbon monomer and a very high rate of disso...
The possible C2Hy (y = 2-6) formation reactions (CHx + CHz -> C2Hy (y = x + z)) and activated second...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
© The Royal Society of Chemistry. Highly stable graphene quantum dots (HSGQDs) are widely observed i...
By using density-functional theory (DFT) calculations, the dissociation of CH4 on various metal surf...
The dissociation of carbon feedstock is a crucial step for understanding the mechanism of graphene c...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Graphene and carbon nanotubes exhibit extraordinary and diverse properties, and therefore these nano...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
Dissociation of methane molecules on the nickel(111) surface is investigated by the ab initio molecu...
tReactivity of methane molecules on the copper surface at the initial stage of graphene growth is in...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
The formation and kinetics of single and double vacancies in graphene chemical vapor deposition (CVD...
The formation and kinetics of single and double vacancies in graphene chemical vapor deposition (CVD...
The possible C2Hy (y = 2-6) formation reactions (CHx + CHz -> C2Hy (y = x + z)) and activated second...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
© The Royal Society of Chemistry. Highly stable graphene quantum dots (HSGQDs) are widely observed i...
By using density-functional theory (DFT) calculations, the dissociation of CH4 on various metal surf...
The dissociation of carbon feedstock is a crucial step for understanding the mechanism of graphene c...
The influence of hydrogen for CH4 dissociation on Cu(1 1 1) and Ni(1 1 1) surfaces has been investig...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
Graphene and carbon nanotubes exhibit extraordinary and diverse properties, and therefore these nano...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
Dissociation of methane molecules on the nickel(111) surface is investigated by the ab initio molecu...
tReactivity of methane molecules on the copper surface at the initial stage of graphene growth is in...
The energetics and growth kinetics of graphene edges during CVD growth on Cu(111) and other catalyst...
The formation and kinetics of single and double vacancies in graphene chemical vapor deposition (CVD...
The formation and kinetics of single and double vacancies in graphene chemical vapor deposition (CVD...
The possible C2Hy (y = 2-6) formation reactions (CHx + CHz -> C2Hy (y = x + z)) and activated second...
Graphene has attracted great attention owing to its excellent physical and chemical properties and p...
© The Royal Society of Chemistry. Highly stable graphene quantum dots (HSGQDs) are widely observed i...