Heteroatom doping in graphene leads to bandgap opening and tunable electronic, magnetic and optical properties, which are important for graphene-based electronics applications. In recent years, scalable growth of nitrogen-doped graphene (NG) by chemical vapor deposition (CVD) has been extensively studied because of its potential for practical applications. A phenomenon that occurs exclusively for CVD-grown NG films is the segregation of doping concentration. However, most studies to date are conducted using highly polycrystalline NG films comprising small grain sizes. It is still unknown whether dopant segregation occurs in single crystalline NG domains. Here, we used hexamethylenetetramine ((CH2)6N4) as a single-source solid precursor to g...
Understanding the growth mechanism of graphene layers in chemical vapor deposition (CVD) and their c...
N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping...
The synthesis of nitrogen-doped single-layer graphene has been achieved on the copper surface by usi...
Heteroatom doping in graphene leads to bandgap opening and tunable electronic, magnetic and optical ...
Atomic-level details of dopant distributions can significantly influence the material properties. Us...
We report experimental and theoretical investigations of nitrogen doped graphene. A low-pressure Che...
A significant advance toward achieving practical applications of graphene as a two-dimensional mater...
Chemical vapor deposition growth has been a popular technique to produce large-area, high-quality mo...
The doping types of graphene sheets are generally tuned by different dopants with either three or fi...
While doping enables application specific tailoring of graphene properties, it can also produce high...
doping enables application-specific tailoring of graphene properties, it can also produce high defec...
Heteroatom doping is a widely used method for the modification of the electronic and chemical proper...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Graphene is a two-dimensional network in which sp2-hybridized carbon atoms are arranged in two diffe...
Atomic-level substitutional doping can significantly tune the electronic properties of graphene. Usi...
Understanding the growth mechanism of graphene layers in chemical vapor deposition (CVD) and their c...
N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping...
The synthesis of nitrogen-doped single-layer graphene has been achieved on the copper surface by usi...
Heteroatom doping in graphene leads to bandgap opening and tunable electronic, magnetic and optical ...
Atomic-level details of dopant distributions can significantly influence the material properties. Us...
We report experimental and theoretical investigations of nitrogen doped graphene. A low-pressure Che...
A significant advance toward achieving practical applications of graphene as a two-dimensional mater...
Chemical vapor deposition growth has been a popular technique to produce large-area, high-quality mo...
The doping types of graphene sheets are generally tuned by different dopants with either three or fi...
While doping enables application specific tailoring of graphene properties, it can also produce high...
doping enables application-specific tailoring of graphene properties, it can also produce high defec...
Heteroatom doping is a widely used method for the modification of the electronic and chemical proper...
Graphene provides a unique platform for the detailed study of its dopants at the atomic level. Previ...
Graphene is a two-dimensional network in which sp2-hybridized carbon atoms are arranged in two diffe...
Atomic-level substitutional doping can significantly tune the electronic properties of graphene. Usi...
Understanding the growth mechanism of graphene layers in chemical vapor deposition (CVD) and their c...
N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping...
The synthesis of nitrogen-doped single-layer graphene has been achieved on the copper surface by usi...