Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor deposition directly on Si3N4/Si at 1000 degrees C without metal catalysts. The as deposited films are atomically thin and wrinkle- and pinhole-free. The film thickness can be controlled by modifying the growth conditions. Raman spectroscopy confirms the sp(2) graphitic structures. The films show ohmic behavior with a sheet resistance of similar to 2.3-10.5 k Omega/square at room temperature. An electric field effect of similar to 2-10% (V-G=-20 V) is observed. The growth is explained by the self-assembly of carbon clusters from hydrocarbon pyrolysis. The scalable and transfer-free technique favors the application of graphene as transparent electr...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
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...
We report the large area growth of highly conductive carbon nanosheets (CNS) composed of few layer g...
Large-sized thin-films composed of single- and few-layered graphene have been synthesized by ...
Abstract—Direct formation of large-area carbon thin films on gallium nitride by chemical vapor depos...
We report large-area synthesis of few-layer graphene films by chemical vapor deposition (CVD) in a c...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
We have developed a new method to grow uniform graphene films directly on various substrates, such a...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
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...
We report the large area growth of highly conductive carbon nanosheets (CNS) composed of few layer g...
Large-sized thin-films composed of single- and few-layered graphene have been synthesized by ...
Abstract—Direct formation of large-area carbon thin films on gallium nitride by chemical vapor depos...
We report large-area synthesis of few-layer graphene films by chemical vapor deposition (CVD) in a c...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
We have developed a new method to grow uniform graphene films directly on various substrates, such a...
Direct formation of large-area carbon thin films on gallium nitride by chemical vapor deposition wit...
The practical use of graphene in consumer electronics has not been demonstrated since the size, unif...
Graphene is one of the most amazing materials every discovered. It is the first stable two-dimension...
The realization of graphene-based, next-generation electronic applications essentially depends on a ...