The practical use of graphene in consumer electronics has not been demonstrated since the size, uniformity, and reliability problems are yet to be solved to satisfy industrial standards. Here we report mass-produced graphene films synthesized by hydrogen-free rapid thermal chemical vapor deposition (RT-CVD), roll-to-roll etching, and transfer methods, which enabled faster and larger production of homogeneous graphene films over 400 × 300 mm<sup>2</sup> area with a sheet resistance of 249 ± 17 Ω/sq without additional doping. The properties of RT-CVD graphene have been carefully characterized by high-resolution transmission electron microscopy, Raman spectroscopy, chemical grain boundary analysis, and various electrical device measurements, s...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Direct chemical vapor deposition of graphene on semiconductors and insulators provides high feasibil...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Large area uniform nanocrystalline graphene is grown by chemical vapor deposition on arbitrary insul...
We have investigated the fabrication of graphene by chemical vapor deposition using a conventional r...
Large area uniform nanocrystalline graphene is grown by chemical vapor deposition on arbitrary insul...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
Graphene, a single layer of sp2 hybridized carbon atoms, was first isolated from graphite in 2004. I...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Metal-catalyst-free chemical vapor deposition (CVD) of large area uniform nanocrystalline graphene o...
Direct chemical vapor deposition of graphene on semiconductors and insulators provides high feasibil...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Large area uniform nanocrystalline graphene is grown by chemical vapor deposition on arbitrary insul...
We have investigated the fabrication of graphene by chemical vapor deposition using a conventional r...
Large area uniform nanocrystalline graphene is grown by chemical vapor deposition on arbitrary insul...
The fundamental properties of graphene are making it an attractive material for a wide variety of ap...
Graphene, a single layer of sp2 hybridized carbon atoms, was first isolated from graphite in 2004. I...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene has attracted intensive attention for various electronic applications in the past decades g...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...