The nucleation of graphene at different locations in the quartz boat was studied, and the lowest nucleation density of graphene in the quartz boat was found. The nucleation density of graphene is the lowest at the bottom of the quartz boat near the gas inlet side. Based on the above results, a simple and reproducible way is proposed to significantly suppress the nucleation density of graphene on the copper foil during the chemical vapor deposition process. Placing the copper foil with an area of 1.3 cm × 1 cm in the middle of the bottom of the quartz boat or further back, and placing two copper pockets in front of the copper foil, an ultra-low nucleation density of ~42 nucleus/cm2 was achieved on the back of the copper foil. Single-crystal ...
We show millimeter-scale graphene single crystals synthesized on commercial Cu foils by the atmosphe...
In this work, we uncover a mechanism initiating spontaneous nucleation of graphene flakes on copper ...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
We present a facile method to grow millimeter-size, hexagon-shaped, monolayer, single-crystal graphe...
Millimeter-size single-crystal monolayer graphene is synthesized on polycrystalline Cu foil by a met...
In this work we explore the kinetics of single-crystal graphene growth as a function of nucleation d...
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 simple method is presented for synthesizing large single crystal graphene domains on melted copper...
In spite of recent progress of graphene growth using chemical vapor deposition, it is still a challe...
In this paper we discuss the effect of background pressure and synthesis temperature on the graphene...
Graphene was synthesized at 1000°C by Atmospheric Pressure Chemical Vapor Deposition on copper foil ...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
To exploit the extraordinary property of graphene in practical electrical and optical devices, it is...
The graphene is easily grown on polycrystalline copper foils using metal-catalyzed chemical vapor de...
We show millimeter-scale graphene single crystals synthesized on commercial Cu foils by the atmosphe...
In this work, we uncover a mechanism initiating spontaneous nucleation of graphene flakes on copper ...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...
We present a facile method to grow millimeter-size, hexagon-shaped, monolayer, single-crystal graphe...
Millimeter-size single-crystal monolayer graphene is synthesized on polycrystalline Cu foil by a met...
In this work we explore the kinetics of single-crystal graphene growth as a function of nucleation d...
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 simple method is presented for synthesizing large single crystal graphene domains on melted copper...
In spite of recent progress of graphene growth using chemical vapor deposition, it is still a challe...
In this paper we discuss the effect of background pressure and synthesis temperature on the graphene...
Graphene was synthesized at 1000°C by Atmospheric Pressure Chemical Vapor Deposition on copper foil ...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
To exploit the extraordinary property of graphene in practical electrical and optical devices, it is...
The graphene is easily grown on polycrystalline copper foils using metal-catalyzed chemical vapor de...
We show millimeter-scale graphene single crystals synthesized on commercial Cu foils by the atmosphe...
In this work, we uncover a mechanism initiating spontaneous nucleation of graphene flakes on copper ...
International audienceDuring the past 40 years, the fields of micro-electronic, energy and communica...