Growth on transition metal substrates is becoming a method of choice to prepare large-area graphene foils. In the case of nickel, where carbon has a significant solubility, such a growth process includes at least two elementary steps: 1) carbon dissolution into the metal, and 2) graphene precipitation at the surface. Here, we dissolve calibrated amounts of carbon in nickel films, using carbon ion implantation, and annealing at 725 ○C or 900 ○C. We then use transmission electron microscopy to analyse the precipitation process in detail: the latter appears to imply carbon diffusion over large distances and at least two distinct microscopic mechanisms
The interaction between graphene and various metals plays a central role in future carbon-based devi...
International audienceThe synthesis of few-layered graphene is performed by ion implantation of carb...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
International audienceGrowth on transition metal substrates is becoming a method of choice to prepar...
International audienceThe mechanisms of diffusion and segregation of carbon from a solid carbon-base...
How does your graphene grow? In situ X-ray photoelectron spectroscopy and X-ray diffraction measurem...
Graphene can be synthesized via metal catalysis using solid carbon source. In this paper, graphene w...
How does your graphene grow? In situ X ray photoelectron spectroscopy and X ray diffraction measurem...
This paper presents results of obtaining graphene and few-layer graphene nanostructures by unconvent...
CuNi alloy foils are demonstrated to be one of the best substrates for synthesizing large area singl...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
The growth of graphene on Ni thin films using several different methods is discussed. These methods ...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
Chemical vapour deposition (CVD) is the most promising graphene synthesis route for film and electro...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
International audienceThe synthesis of few-layered graphene is performed by ion implantation of carb...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
International audienceGrowth on transition metal substrates is becoming a method of choice to prepar...
International audienceThe mechanisms of diffusion and segregation of carbon from a solid carbon-base...
How does your graphene grow? In situ X-ray photoelectron spectroscopy and X-ray diffraction measurem...
Graphene can be synthesized via metal catalysis using solid carbon source. In this paper, graphene w...
How does your graphene grow? In situ X ray photoelectron spectroscopy and X ray diffraction measurem...
This paper presents results of obtaining graphene and few-layer graphene nanostructures by unconvent...
CuNi alloy foils are demonstrated to be one of the best substrates for synthesizing large area singl...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
The growth of graphene on Ni thin films using several different methods is discussed. These methods ...
The mechanism and kinetics of graphene formation from amorphous nickel carbides have been investigat...
Chemical vapour deposition (CVD) is the most promising graphene synthesis route for film and electro...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
The interaction between graphene and various metals plays a central role in future carbon-based devi...
International audienceThe synthesis of few-layered graphene is performed by ion implantation of carb...
The interaction between graphene and various metals plays a central role in future carbon-based devi...