Using the density functional theory combined with both the van der Waals correction and the effective screening medium method, we investigate the energetics and electronic structures of CO and CO2 molecules adsorbed on graphene surfaces in the field-effect-transistor structure with respect to the external electric field by the excess electrons/holes. The binding energies of CO and CO2 molecules to graphene monotonically increase with increasing hole and electron concentrations. The increase occurs regardless of the molecular conformations to graphene and the counter electrode, indicating that the carrier injection substantially enhances the molecular adsorption on graphene. Injected carriers also modulate the stable molecular conformation, ...
Recent experimental work has demonstrated production of quasi free-standing graphene by methane inte...
Cataloged from PDF version of article.This paper investigates the adsorption of carbon adatoms on gr...
Pure graphene is known as the strongest material ever discovered. However, the unavoidable defect fo...
The space within the interlayer of 2-dimensional (2D) nanosheets provides new and intriguing confine...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
none12siGraphene impurities provide both a source of mobility-limiting disorder and a means to desir...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
First-principles electronic structure calculations based on spin-polarized density functional theory...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
We investigate the stability and electronic properties of single Co atoms on graphene with near-exac...
Graphene impurities provide both a source of mobility-limiting disorder and a means to desirably alt...
First-principles total-energy calculations clarify the effect of charged Al nanoparticles on carrier...
Decoration of graphene with metals and metal-oxides is known to be one of the effective methods to e...
Many recent calculations have been performed to study a Co atom adsorbed on graphene, with significa...
We performed density-functional theory calculations to study the electronic structures at the interf...
Recent experimental work has demonstrated production of quasi free-standing graphene by methane inte...
Cataloged from PDF version of article.This paper investigates the adsorption of carbon adatoms on gr...
Pure graphene is known as the strongest material ever discovered. However, the unavoidable defect fo...
The space within the interlayer of 2-dimensional (2D) nanosheets provides new and intriguing confine...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
none12siGraphene impurities provide both a source of mobility-limiting disorder and a means to desir...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
First-principles electronic structure calculations based on spin-polarized density functional theory...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
We investigate the stability and electronic properties of single Co atoms on graphene with near-exac...
Graphene impurities provide both a source of mobility-limiting disorder and a means to desirably alt...
First-principles total-energy calculations clarify the effect of charged Al nanoparticles on carrier...
Decoration of graphene with metals and metal-oxides is known to be one of the effective methods to e...
Many recent calculations have been performed to study a Co atom adsorbed on graphene, with significa...
We performed density-functional theory calculations to study the electronic structures at the interf...
Recent experimental work has demonstrated production of quasi free-standing graphene by methane inte...
Cataloged from PDF version of article.This paper investigates the adsorption of carbon adatoms on gr...
Pure graphene is known as the strongest material ever discovered. However, the unavoidable defect fo...