AbstractThe adsorptions of small gas molecules (CO, NO and NO2) on group III (B, Al and Ga) doped graphene are investigated using ab initio density functional theory calculations, to exploit the potential applications of graphene as toxic gas sensors. For enabling practical gas sensing applications, the effect of water vapour on the sensing properties of these doped graphenes are also studied. The most stable geometries of gas molecules on these doped graphenes are determined and the adsorption energies are calculated. Our results show that the structural and electronic properties of B-doped graphene are sensitive to NO and NO2, but not influenced by the adsorption of CO and H2O. The chemisorptions of CO, NO, NO2 and H2O on Al- and Ga-doped...
The interaction of pure graphene nano sheet and Al-doped graphene nano sheet with SO2 pollutant gas ...
By using first-principles calculations based on density functional theory, we study the adsorption e...
Two-dimensional materials from group IVA namely graphene, silicene, and germanene have gained resear...
AbstractThe adsorptions of small gas molecules (CO, NO and NO2) on group III (B, Al and Ga) doped gr...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a seri...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a ser...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
The adsorption of several common gas molecules over boron-, nitrogen-, aluminum-, and sulfur-doped g...
The interactions between four different graphenes (including pristine, B- or N-doped and defective g...
Designing a high-performance gas sensor to efficiently detect the hazardous NH3 molecule is benefici...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
Herein, we have used density functional theory (DFT) to investigate the adsorption behavior of gas m...
Abstract The gas-adsorption behaviors of small molecules CO, H2O, H2S, NH3, SO2, and NO on pristine ...
The first-principles calculations are performed to study the gas (NH<sub>3</sub>, NO<sub>2</sub>, NO...
The interaction of pure graphene nano sheet and Al-doped graphene nano sheet with SO2 pollutant gas ...
By using first-principles calculations based on density functional theory, we study the adsorption e...
Two-dimensional materials from group IVA namely graphene, silicene, and germanene have gained resear...
AbstractThe adsorptions of small gas molecules (CO, NO and NO2) on group III (B, Al and Ga) doped gr...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a seri...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a ser...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
The adsorption of several common gas molecules over boron-, nitrogen-, aluminum-, and sulfur-doped g...
The interactions between four different graphenes (including pristine, B- or N-doped and defective g...
Designing a high-performance gas sensor to efficiently detect the hazardous NH3 molecule is benefici...
We have performed density functional theory (DFT) calculations to study the gas (CO, CO<sub>2</sub>,...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
Herein, we have used density functional theory (DFT) to investigate the adsorption behavior of gas m...
Abstract The gas-adsorption behaviors of small molecules CO, H2O, H2S, NH3, SO2, and NO on pristine ...
The first-principles calculations are performed to study the gas (NH<sub>3</sub>, NO<sub>2</sub>, NO...
The interaction of pure graphene nano sheet and Al-doped graphene nano sheet with SO2 pollutant gas ...
By using first-principles calculations based on density functional theory, we study the adsorption e...
Two-dimensional materials from group IVA namely graphene, silicene, and germanene have gained resear...