A novel carbon-enclosed chemical vapor deposition (CE-CVD) to grow high quality monolayer graphene on Cu substrate at a low temperature of 500 °C was demonstrated. The quality of the grown graphene was investigated by Raman spectra, and the detailed growth mechanism of high quality graphene by the CE-CVD process was investigated in detail. In addition to growth of high quality monolayer graphene, a transparent hybrid few-layer graphene/CuNi mesh electrode directly synthesized by the CE-CVD process on a conventional glass substrate at the temperature of 500 °C was demonstrated, showing excellent electrical properties (∼5 Ω/□ @ 93.5% transparency) and ready to be used for optical applications without further transfer process. The few-layer gr...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
Chemical vapor deposition (CVD) represents an attractive route to synthesize large-area graphene. It...
Graphene, two dimensional sheet of carbon atoms has recently gained attention as some of its propert...
Graphene, a two dimensional allotrope of carbon in a honeycomb lattice, has gathered wide attention ...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
The growth of graphene using resistive-heating cold-wall chemical vapor deposition (CVD) is demonstr...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
Graphene growth at low temperatures (below 500 oC) on copper catalyst by CVD method was studied. The...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
A two-step CVD route with toluene as the carbon precursor was used to grow continuous large-area mon...
Chemical vapor deposition (CVD) is one of the best ways to scalably grow low cost, high quality grap...
Catalyst-free and scalable synthesis of graphene on various glass substrates at low temperatures is ...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
Chemical vapor deposition (CVD) represents an attractive route to synthesize large-area graphene. It...
Graphene, two dimensional sheet of carbon atoms has recently gained attention as some of its propert...
Graphene, a two dimensional allotrope of carbon in a honeycomb lattice, has gathered wide attention ...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
The growth of graphene using resistive-heating cold-wall chemical vapor deposition (CVD) is demonstr...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
Graphene growth at low temperatures (below 500 oC) on copper catalyst by CVD method was studied. The...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
A noncatalytic chemical vapor deposition mechanism is proposed, where high precursor concentration, ...
A two-step CVD route with toluene as the carbon precursor was used to grow continuous large-area mon...
Chemical vapor deposition (CVD) is one of the best ways to scalably grow low cost, high quality grap...
Catalyst-free and scalable synthesis of graphene on various glass substrates at low temperatures is ...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
Chemical vapor deposition (CVD) represents an attractive route to synthesize large-area graphene. It...