Chemically modifying graphene (such as chemical doping) is a commonly used method to improve its formaldehyde sensing properties, but the microscopic mechanisms of heteroatoms in the adsorption and sensing process are still unclear. In this paper, the adsorption and sensing properties of formaldehyde on graphene surfaces modified by X doping (X = B, N, O, P, S, Mg and Al) were systematically investigated by first-principles calculations. The adsorption geometries, adsorption energies, charge transfers, and electronic structures were obtained and analyzed. The adsorption strengths of HCHO molecule on the Mg- and Al-doped graphene surfaces were stronger than those of non-metal (B, N, O, P and S)-doped cases. These results showed that the Mg- ...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a ser...
Designing a high-performance gas sensor to efficiently detect the hazardous NH3 molecule is benefici...
The adsorption of formaldehyde (HCHO) gas on different one-dimensional ZnO nanostructures is examine...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
Sensitive materials for formaldehyde (HCHO) sensor need high sensitivity and selectivity. The resear...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
The interactions between four different graphenes (including pristine, B- or N-doped and defective g...
Graphene has attracted much attention for sensing applications in recent years. Its largest surface-...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
The adsorption behaviors of H2S and its intermediates (SH and S) on Co anchored graphene sheets (Co-...
Density functional theory (DFT) level calculations were performed to study the interaction of hydrog...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a seri...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
The adsorption characteristics of H2 molecules on the surface of Pd-doped and Pd-decorated graphene ...
The formaldehyde detection is important for protecting human health and controlling environment poll...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a ser...
Designing a high-performance gas sensor to efficiently detect the hazardous NH3 molecule is benefici...
The adsorption of formaldehyde (HCHO) gas on different one-dimensional ZnO nanostructures is examine...
The adsorption of H2 on the pristine and Mo-doped graphene was investigated by density functional th...
Sensitive materials for formaldehyde (HCHO) sensor need high sensitivity and selectivity. The resear...
Understanding the interaction mechanisms of CO, NO, SO2, and HCHO with graphene are important in dev...
The interactions between four different graphenes (including pristine, B- or N-doped and defective g...
Graphene has attracted much attention for sensing applications in recent years. Its largest surface-...
In this project work, we have performed Density Functional Theory (DFT) calculations to study the ga...
The adsorption behaviors of H2S and its intermediates (SH and S) on Co anchored graphene sheets (Co-...
Density functional theory (DFT) level calculations were performed to study the interaction of hydrog...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a seri...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
The adsorption characteristics of H2 molecules on the surface of Pd-doped and Pd-decorated graphene ...
The formaldehyde detection is important for protecting human health and controlling environment poll...
In order to exploit the potential applications of graphene as gas sensors, the adsorptions of a ser...
Designing a high-performance gas sensor to efficiently detect the hazardous NH3 molecule is benefici...
The adsorption of formaldehyde (HCHO) gas on different one-dimensional ZnO nanostructures is examine...