The growth of high quality graphene layers by chemical vapor deposition (CVD) has been found to strongly depend on growth conditions with results varying greatly from one laboratory to another for nominally identical conditions. We report the results of a systematic investigation of the role of hydrogen and oxidizing impurities present in the gas feedstock during the growth and cooling stages in low-pressure CVD. First, we show that for a partial pressure of oxidizing impurities below 1 ppb, hydrogen is not required for graphene growth from methane. Second, we demonstrate that purified hydrogen does not etch graphene films at typical growth temperatures. Third, a flow of purified hydrogen during cooling counterbalances graphene etching by o...
Wafer-scale single-crystal graphene film directly grown on insulating substrates via the chemical va...
Single-layer and high-quality graphene was synthesized over Cu foil by atmospheric pressure chemical...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
The extraordinary properties of graphene make it one of the most interesting materials for future ap...
The growth of graphene on copper by atmospheric pressure chemical vapor deposition in a system free ...
Graphene growth and etching are reciprocal processes that can reach a dynamic balance during chemica...
Synthesis of graphene by chemical vapor deposition (CVD) from hydrocarbons on Cu foil substrates can...
Synthesizing bilayer graphene (BLG), which has a band gap, is an important step in graphene applicat...
A method for defect-free large crystallite graphene growth. remains unknown despite much. research e...
Since the discovery of graphene, chemical vapor deposition (CVD) is by far the best method to produc...
International audienceLow-pressure chemical vapor deposition synthesis of graphene films on two diff...
Graphene domains with different sizes and densities were successfully grown on Cu foils with use of ...
We systematically study the effects of residual oxygen in the bulk of Cu foil catalysts on the chemi...
Graphene, since the first successful exfoliation of graphite, has continuously attracted attention d...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Wafer-scale single-crystal graphene film directly grown on insulating substrates via the chemical va...
Single-layer and high-quality graphene was synthesized over Cu foil by atmospheric pressure chemical...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
The extraordinary properties of graphene make it one of the most interesting materials for future ap...
The growth of graphene on copper by atmospheric pressure chemical vapor deposition in a system free ...
Graphene growth and etching are reciprocal processes that can reach a dynamic balance during chemica...
Synthesis of graphene by chemical vapor deposition (CVD) from hydrocarbons on Cu foil substrates can...
Synthesizing bilayer graphene (BLG), which has a band gap, is an important step in graphene applicat...
A method for defect-free large crystallite graphene growth. remains unknown despite much. research e...
Since the discovery of graphene, chemical vapor deposition (CVD) is by far the best method to produc...
International audienceLow-pressure chemical vapor deposition synthesis of graphene films on two diff...
Graphene domains with different sizes and densities were successfully grown on Cu foils with use of ...
We systematically study the effects of residual oxygen in the bulk of Cu foil catalysts on the chemi...
Graphene, since the first successful exfoliation of graphite, has continuously attracted attention d...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Wafer-scale single-crystal graphene film directly grown on insulating substrates via the chemical va...
Single-layer and high-quality graphene was synthesized over Cu foil by atmospheric pressure chemical...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...