Bilayer graphene (BLG) has emerged as a promising candidate for next-generation electronic applications, especially when it exists in the Bernal-stacked form, but its large-scale production remains a challenge. Here we present an experimental and first-principles calculation study of the epitaxial chemical vapor deposition (CVD) nucleation process for Bernal-stacked BLG growth on Cu using ethanol as a precursor. Results show that a carefully adjusted flow rate of ethanol can yield a uniform BLG film with a surface coverage of nearly 90% and a Bernal-stacking ratio of nearly 100% on ordinary flat Cu substrates, and its epitaxial nucleation of the second layer is mainly due to the active CH3 radicals with the presence of a monolayer-graphene-...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
DoctorGraphene is a two-dimensional carbon allotrope exhibiting high charge-carrier mobility, therma...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
Using ethanol as the carbon source, self-limiting growth of AB-stacked bilayer graphene (BLG) has be...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
High-quality single-layered and bilayered graphene (SLG and BLG) was synthesized on copper foil surf...
labeling ABSTRACT. Using ethanol as the carbon source, self-limiting growth of AB-stacked bilayer gr...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
Band gap opening in bilayer graphene (BLG) under a vertical electric field is important for the real...
The synthesis of Bernal-stacked multilayer graphene over large areas is intensively investigated due...
Bernal-stacked bilayer graphene is uniquely suited for application in electronic and photonic device...
Bilayer graphene (BLG) exhibits unique properties depending on a stacking angle between the two laye...
Using low-pressure chemical vapor deposition (LPCVD), we, for the first time, realize the self-limit...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
Bernal-stacked bilayer graphene is uniquely suited for application in electronic and photonic device...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
DoctorGraphene is a two-dimensional carbon allotrope exhibiting high charge-carrier mobility, therma...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...
Using ethanol as the carbon source, self-limiting growth of AB-stacked bilayer graphene (BLG) has be...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
High-quality single-layered and bilayered graphene (SLG and BLG) was synthesized on copper foil surf...
labeling ABSTRACT. Using ethanol as the carbon source, self-limiting growth of AB-stacked bilayer gr...
Bernal (AB)-stacked bilayer graphene (BLG) is a semiconductor whose bandgap can be tuned by a transv...
Band gap opening in bilayer graphene (BLG) under a vertical electric field is important for the real...
The synthesis of Bernal-stacked multilayer graphene over large areas is intensively investigated due...
Bernal-stacked bilayer graphene is uniquely suited for application in electronic and photonic device...
Bilayer graphene (BLG) exhibits unique properties depending on a stacking angle between the two laye...
Using low-pressure chemical vapor deposition (LPCVD), we, for the first time, realize the self-limit...
During the past 40 years, the fields of micro-electronic, energy and communication devices have exp...
Bernal-stacked bilayer graphene is uniquely suited for application in electronic and photonic device...
The mechanism by which Cu catalyst pretreatments control graphene nucleation density in scalable che...
DoctorGraphene is a two-dimensional carbon allotrope exhibiting high charge-carrier mobility, therma...
The synthesis of wafer-scale single crystal graphene remains a challenge toward the utilization of i...