We report the large area growth of highly conductive carbon nanosheets (CNS) composed of few layer graphene on 200mm diameter Si substrates using conventional radio frequency plasma-enhanced chemical vapour deposition. Raman spectroscopy is used to characterise the evolution of the CNS nucleation and growth with time in conjunction with TEM revealing the nano-sized graphene-like nature of these films and the intimate contact to the substrate. An individual sheet can have edges as thin as 3 graphene layers. The influence of the growth support layer is also discussed as film growth is compared on titanium nitride (TiN)and directly on Si. Electrochemical cyclic voltammogram (CV) measurements reveal these layers to form an excellent electrical ...
Growth of Carbon Nanowalls has been carried out by Radio Frequency Chemical Vapor Deposition (RF-PEC...
We have demonstrated a new method for the large-area graphene growth, which can lead to a scalable l...
Because of its unique properties, such as extremely high mobility, high mechanical strength, good op...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
Nano-carbon materials have become of great interest as the central issue of nanotechnology in chemi...
Synthesis and functionalization of large-area graphene and its structural, electrical and electroche...
Synthesis and functionalization of large-area graphene and its structural, electrical and electroche...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Nottbohm CT, Turchanin A, Beyer A, Stosch R, Gölzhäuser A. Mechanically Stacked 1-nm-Thick Carbon Na...
The global demand for high performance and environmentally friendly energy storage systems leads to ...
Growth of Carbon Nanowalls has been carried out by Radio Frequency Chemical Vapor Deposition (RF-PEC...
Growth of Carbon Nanowalls has been carried out by Radio Frequency Chemical Vapor Deposition (RF-PEC...
We have demonstrated a new method for the large-area graphene growth, which can lead to a scalable l...
Because of its unique properties, such as extremely high mobility, high mechanical strength, good op...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
Graphene is typically grown using thermal chemical vapor deposition (CVD) on metallic substrates suc...
Nano-carbon materials have become of great interest as the central issue of nanotechnology in chemi...
Synthesis and functionalization of large-area graphene and its structural, electrical and electroche...
Synthesis and functionalization of large-area graphene and its structural, electrical and electroche...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Large-area uniform carbon films with graphene-like properties are synthesized by chemical vapor depo...
Microwave plasma driven chemical vapour deposition was used to synthesize graphene nanosheets from a...
Nottbohm CT, Turchanin A, Beyer A, Stosch R, Gölzhäuser A. Mechanically Stacked 1-nm-Thick Carbon Na...
The global demand for high performance and environmentally friendly energy storage systems leads to ...
Growth of Carbon Nanowalls has been carried out by Radio Frequency Chemical Vapor Deposition (RF-PEC...
Growth of Carbon Nanowalls has been carried out by Radio Frequency Chemical Vapor Deposition (RF-PEC...
We have demonstrated a new method for the large-area graphene growth, which can lead to a scalable l...
Because of its unique properties, such as extremely high mobility, high mechanical strength, good op...