First-principles density functional theory calculations are performed on dopamine–graphene systems in the presence of an external electric field. The graphene lattice is also modified via substitutional boron- and nitrogen-doping, and via the introduction of defects (monovacancy and Thrower–Stone–Wales). The geometry optimization, electronic density of states, cohesive energy, electronic charge density, and wave functions are analyzed. Our results revealed that dopamine is anchored on the surface of graphene via a physisorption mechanism, and the cohesive strength varies as B-doped > N-doped > vacancy defect > Thrower–Stone–Wales defect. Boron-doped graphene exhibits valence states with dopamine molecules; furthermore, this system showed th...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Graphene is suitable for use as a high-performance sensor material due to its unique atomically-thin...
N-doped carbon nanomaterials have received increased attention from electrochemists because of their...
In the present work the effect exerted by N-doping on parameterscharacterizing dopamine adsorption o...
The role of noncovalent interactions in the adsorption of biological molecules on graphene is a subj...
The interest in graphene among researchers has not ceased since Novoselov and Geim published their f...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
The magnetic property of a graphene-adsorbed Fe adatom was observed under an external electric field...
In this contribution, we aim at investigating the mechanism of biosensing in graphene-based material...
We study how the Fermi energy of a graphene monolayer separated from a conducting substrate by a die...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
Nitrogen-doped graphene was recently synthesized and was reported to be a catalyst for hydrogen diss...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Graphene is suitable for use as a high-performance sensor material due to its unique atomically-thin...
N-doped carbon nanomaterials have received increased attention from electrochemists because of their...
In the present work the effect exerted by N-doping on parameterscharacterizing dopamine adsorption o...
The role of noncovalent interactions in the adsorption of biological molecules on graphene is a subj...
The interest in graphene among researchers has not ceased since Novoselov and Geim published their f...
Low contact barrier electrodes and various field-emitting devices require a tunable work function, a...
The magnetic property of a graphene-adsorbed Fe adatom was observed under an external electric field...
In this contribution, we aim at investigating the mechanism of biosensing in graphene-based material...
We study how the Fermi energy of a graphene monolayer separated from a conducting substrate by a die...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
Nitrogen-doped graphene was recently synthesized and was reported to be a catalyst for hydrogen diss...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Graphene is suitable for use as a high-performance sensor material due to its unique atomically-thin...
N-doped carbon nanomaterials have received increased attention from electrochemists because of their...