High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a low-pressure chemical vapor deposition (CVD) process using Cu vapor as a catalyst. In this process, continuous generation and supply of highly concentrated Cu vapor is the key to the growth of largescale, high-quality graphene. It was achieved by direct physical contact, or "touch-down," of a Cu foil with an underlying sacrificial SiO2/Si substrate, and the target quartz substrate was placed on top of the Cu foil, eventually having a quartz/Cu/SiO2/Si sandwich structure. To establish the reaction mechanism, a test growth was performed without the quartz substrate, which revealed that Cu is diffused through the SiO2 layer of the sacrificial S...
For more than half a century silicon-based CMOS transistors have been scaled continuously to fulfill...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A method of producing large area continuous graphene directly on SiO 2 by chemical vapor deposition ...
High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a...
We report that high-quality single-layer graphene (SLG) has been successfully synthesized directly o...
The era of two-dimensional materials has begun with graphene. It is the first artificially-isolated ...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
A method of producing large area continuous graphene directly on SiO2 by chemical vapor deposition i...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
Graphene has sparked a great deal of interest in the microelectronics field since the discovery of i...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
For more than half a century silicon-based CMOS transistors have been scaled continuously to fulfill...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A method of producing large area continuous graphene directly on SiO 2 by chemical vapor deposition ...
High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a...
We report that high-quality single-layer graphene (SLG) has been successfully synthesized directly o...
The era of two-dimensional materials has begun with graphene. It is the first artificially-isolated ...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
Graphene is a thin atomic layer of carbon atoms which has a hexagonal lattice structure. Due to its ...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
A method of producing large area continuous graphene directly on SiO2 by chemical vapor deposition i...
We show that monolayer graphene can be grown isothermally on polycrystalline copper foils via ultra ...
Graphene has sparked a great deal of interest in the microelectronics field since the discovery of i...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
For more than half a century silicon-based CMOS transistors have been scaled continuously to fulfill...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
A method of producing large area continuous graphene directly on SiO 2 by chemical vapor deposition ...