In this paper we discuss the effect of background pressure and synthesis temperature on the graphene crystal sizes in chemical vapor deposition (CVD) on copper catalyst. For the first time, we quantitatively demonstrate a fundamental role of the background pressure and provide the activation energy for graphene nucleation in atmospheric pressure CVD (9 eV), which is substantially higher than for low pressure CVD (4 eV). We attribute the difference to a greater importance of copper sublimation in low pressure CVD, where severe copper evaporation likely dictates the desorption rate of active carbon from the surface. At atmospheric pressure, where copper evaporation is suppressed, the activation energy is assigned to the desorption energy of c...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...
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...
<p>In this paper we discuss the effect of background pressure and synthesis temperature on the graph...
We show millimeter-scale graphene single crystals synthesized on commercial Cu foils by the atmosphe...
To exploit the extraordinary property of graphene in practical electrical and optical devices, it is...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
A systematic study of the parameter space of graphene chemical vapor deposition (CVD) on polycrystal...
Currently, the graphene industry is moving forward to the import of graphene in a number of novel a...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
Chemical vapor deposition on copper is the most widely used method to synthesize graphene at large s...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
Chemical vapor deposition on copper is the most widely used method to synthesize graphene at large s...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...
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...
<p>In this paper we discuss the effect of background pressure and synthesis temperature on the graph...
We show millimeter-scale graphene single crystals synthesized on commercial Cu foils by the atmosphe...
To exploit the extraordinary property of graphene in practical electrical and optical devices, it is...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
A systematic study of the parameter space of graphene chemical vapor deposition (CVD) on polycrystal...
Currently, the graphene industry is moving forward to the import of graphene in a number of novel a...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
Chemical vapor deposition on copper is the most widely used method to synthesize graphene at large s...
In this work, single-layer graphene with compact millimeter-size domains has been obtained by chemic...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
Chemical vapor deposition on copper is the most widely used method to synthesize graphene at large s...
*S Supporting Information ABSTRACT: A systematic study of the parameter space of graphene chemical v...
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...