We report the synthesis of high-quality graphene on Cu foils using hot-filament chemical vapor deposition technique and demonstrate that by suitably varying the CH4 and H2 flow rates, one can also obtain hydrogenated graphene. Micro-Raman spectroscopy studies confirm the growth of monolayer graphene as inferred from the intensity ratio of 2D to G peak which is nearly four in unhydrogenated samples. Detailed Raman area mapping confirms the uniform coverage of monolayer graphene. The grown layer is also transferred onto a Si substrate over ~10 × 10 mm sq. area. The present results provide a leap in synthesis technology of high-quality graphene and pave way for scaling up the process
Few-layer graphene is obtained in atmospheric chemical vapor deposition on polycrystalline copper in...
Graphene is an allotrope of carbon in the form of a plane of sp2-bonded atoms with a molecular bond ...
Here, we report the synthesis of high quality monolayer graphene on the pre-treated copper (Cu) foil...
We report the synthesis of high-quality graphene on Cu foils using hot-filament chemical vapor depos...
We report the synthesis of high-quality graphene on Cu foils using hot-filament chemical vapor depos...
High-quality graphene was grown on polycrystalline copper (Cu) foils (1 cm × 1 cm) using hot-filamen...
Graphene was grown on high purity Cu foils using hot-filament chemical vapor deposition method. The ...
In the aim to get high quality graphene films, with large domains and free from impurities, minimizi...
Graphene has been in the spotlight of research activity for the past decade, this two-dimensional la...
Chemical vapor deposition (CVD) represents an attractive route to synthesize large-area graphene. It...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
We report on the effect of temperature on the growth of bilayer graphene on a copper foil under atmo...
Graphene was synthesized at 1000°C by Atmospheric Pressure Chemical Vapor Deposition on copper foil ...
We present a detailed investigation of the nucleation sites, growth, and morphology of large-area gr...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
Few-layer graphene is obtained in atmospheric chemical vapor deposition on polycrystalline copper in...
Graphene is an allotrope of carbon in the form of a plane of sp2-bonded atoms with a molecular bond ...
Here, we report the synthesis of high quality monolayer graphene on the pre-treated copper (Cu) foil...
We report the synthesis of high-quality graphene on Cu foils using hot-filament chemical vapor depos...
We report the synthesis of high-quality graphene on Cu foils using hot-filament chemical vapor depos...
High-quality graphene was grown on polycrystalline copper (Cu) foils (1 cm × 1 cm) using hot-filamen...
Graphene was grown on high purity Cu foils using hot-filament chemical vapor deposition method. The ...
In the aim to get high quality graphene films, with large domains and free from impurities, minimizi...
Graphene has been in the spotlight of research activity for the past decade, this two-dimensional la...
Chemical vapor deposition (CVD) represents an attractive route to synthesize large-area graphene. It...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
We report on the effect of temperature on the growth of bilayer graphene on a copper foil under atmo...
Graphene was synthesized at 1000°C by Atmospheric Pressure Chemical Vapor Deposition on copper foil ...
We present a detailed investigation of the nucleation sites, growth, and morphology of large-area gr...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
Few-layer graphene is obtained in atmospheric chemical vapor deposition on polycrystalline copper in...
Graphene is an allotrope of carbon in the form of a plane of sp2-bonded atoms with a molecular bond ...
Here, we report the synthesis of high quality monolayer graphene on the pre-treated copper (Cu) foil...