Chemical vapor deposition (CVD) is known to produce continuous, large-area graphene sheet with decent physical properties. In the CVD process, catalytic metal substrates are typically used as the growth template, and copper has been adopted as the representative material platform due to its low carbon solubility and resulting monolayer graphene growth capability. For the widespread industrial applications of graphene, achieving the high-quality is essential. Several factors affect the qualities of CVD-grown graphene, such as pressure, temperature, carbon precursors, or growth template. In this work, we provide detailed analysis on the direct relation between the metallic growth substrate (copper) and overall properties of the resulting CVD-...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
Chemical vapor deposition (CVD) is known to produce continuous, large-area graphene sheet with decen...
Recently, chemical vapor deposition (CVD) on copper has been becoming a main method for preparing la...
Recently, chemical vapor deposition (CVD) on copper has been becoming a main method for preparing la...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Graphene, a 2-dimentional carbon material, exhibits optical, mechanical, chemical and electrical pr...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
Chemical vapor deposition (CVD) is known to produce continuous, large-area graphene sheet with decen...
Recently, chemical vapor deposition (CVD) on copper has been becoming a main method for preparing la...
Recently, chemical vapor deposition (CVD) on copper has been becoming a main method for preparing la...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Chemical vapor deposition (CVD) is regarded as the most promising technique for the mass production ...
Graphene, a 2-dimentional carbon material, exhibits optical, mechanical, chemical and electrical pr...
Growth of high quality graphene is the basis for the successful demonstration and reduction to pract...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...