Chemical vapor deposition (CVD) is the most promising method for the preparation of high-quality and large-area graphene films, especially the epitaxial growth of graphene on large-area single-crystal Cu foils. While single-crystal Cu foils are normally achieved by thermally annealing the commercial polycrystalline Cu foils, their size and therefore the size of graphene films grown on them are limited to the size of the reaction chamber. We report a simple and feasible method to prepare large-area Cu foils with decimeter grains by thermally annealing the rolled-up Cu foils, where the Cu layers are separated by thin porous carbon fiber cloths. The carbon fiber cloths prevent Cu layers from sticking to each other at high temperatures while do...
Over the last decade, graphene has generated immense excitement in the scientific and engineering co...
A systematic study of the parameter space of graphene chemical vapor deposition (CVD) on polycrystal...
High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
In this research, we constructed a controlled chamber pressure CVD (CP-CVD) system to manipulate gra...
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...
A foundation of the modern technology that uses single-crystal silicon has been the growth of highqu...
A foundation of the modern technology that uses single-crystal silicon has been the growth of high-q...
A foundation of the modern technology that uses single-crystal silicon has been the growth of high-q...
Graphene has been attracting great interest because of its distinctive band structure and physical p...
Graphene growth on Cu foils by catalytic decomposition of methane forms predominantly single-layer g...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
Controlling the metal catalyst surface structure is a critical factor to achieve growth of large gra...
Over the last decade, graphene has generated immense excitement in the scientific and engineering co...
A systematic study of the parameter space of graphene chemical vapor deposition (CVD) on polycrystal...
High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
Over the past decade, graphene has advanced rapidly as one of the most promising materials changing ...
In this research, we constructed a controlled chamber pressure CVD (CP-CVD) system to manipulate gra...
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...
A foundation of the modern technology that uses single-crystal silicon has been the growth of highqu...
A foundation of the modern technology that uses single-crystal silicon has been the growth of high-q...
A foundation of the modern technology that uses single-crystal silicon has been the growth of high-q...
Graphene has been attracting great interest because of its distinctive band structure and physical p...
Graphene growth on Cu foils by catalytic decomposition of methane forms predominantly single-layer g...
A simple method is presented for synthesizing large single crystal graphene domains on melted copper...
Controlling the metal catalyst surface structure is a critical factor to achieve growth of large gra...
Over the last decade, graphene has generated immense excitement in the scientific and engineering co...
A systematic study of the parameter space of graphene chemical vapor deposition (CVD) on polycrystal...
High-quality, large-area, single-layer graphene was directly grown on top of a quartz substrate by a...