N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping technique and chemical vapor deposition (CVD). The solid source for N-doping was embedded into the copper substrate by NH3 plasma immersion. During the treatment, NH3 plasma radicals not only flattened the Cu substrate such that the root-mean-square roughness value gradually decreased from 51.9 nm to 15.5 nm but also enhanced the nitrogen content in the Cu substrate. The smooth surface of copper enables good control of graphene growth and the decoupling of height fluctuations and ripple effects, which compensate for the Coulomb scattering by nitrogen incorporation. On the other hand, the nitrogen atoms on the pre-treated Cu surface enable ni...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
We doped graphene in situ during synthesis from methane and ammonia on copper in a low-pressure chem...
To achieve the applications of graphene, the modulation of its electrical properties is of great sig...
N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping...
We report experimental and theoretical investigations of nitrogen doped graphene. A low-pressure Che...
Tuning the band-gap of graphene is a current need for real device applications. Copper (Cu) as a sub...
A significant advance toward achieving practical applications of graphene as a two-dimensional mater...
While doping enables application specific tailoring of graphene properties, it can also produce high...
Atomic-level substitutional doping can significantly tune the electronic properties of graphene. Usi...
doping enables application-specific tailoring of graphene properties, it can also produce high defec...
International audienceWe investigate the nitrogen doping of mono-and bi-layer graphene on 6HeSiC(000...
This report details the controllable doping of graphene through post?growth plasma treatments. Defec...
Heteroatom doping is a widely used method for the modification of the electronic and chemical proper...
Rapid synthesis of nitrogen-doped, few-layer graphene films on Cu foil is achieved by microwave plas...
Nitrogen-doped graphene (NG) was synthesized through the chemical vapor deposition (CVD) of graphene...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
We doped graphene in situ during synthesis from methane and ammonia on copper in a low-pressure chem...
To achieve the applications of graphene, the modulation of its electrical properties is of great sig...
N-doped graphene with low intrinsic defect densities was obtained by combining a solid source doping...
We report experimental and theoretical investigations of nitrogen doped graphene. A low-pressure Che...
Tuning the band-gap of graphene is a current need for real device applications. Copper (Cu) as a sub...
A significant advance toward achieving practical applications of graphene as a two-dimensional mater...
While doping enables application specific tailoring of graphene properties, it can also produce high...
Atomic-level substitutional doping can significantly tune the electronic properties of graphene. Usi...
doping enables application-specific tailoring of graphene properties, it can also produce high defec...
International audienceWe investigate the nitrogen doping of mono-and bi-layer graphene on 6HeSiC(000...
This report details the controllable doping of graphene through post?growth plasma treatments. Defec...
Heteroatom doping is a widely used method for the modification of the electronic and chemical proper...
Rapid synthesis of nitrogen-doped, few-layer graphene films on Cu foil is achieved by microwave plas...
Nitrogen-doped graphene (NG) was synthesized through the chemical vapor deposition (CVD) of graphene...
Nitrogen doping of graphene is a suitable route to tune the electronic structure of graphene, leadin...
We doped graphene in situ during synthesis from methane and ammonia on copper in a low-pressure chem...
To achieve the applications of graphene, the modulation of its electrical properties is of great sig...