Taking the adsorption of CO, NO, O2 and O as probes, we investigated the electronic structure of transition metal atoms (TM, TM = Fe, Co, Ni, Cu and Zn) embedded in graphene by first-principles-based calculations. We showed that these TM atoms can be effectively stabilized on monovacancy defects on graphene by forming plausible interactions with the C atoms associated with dangling bonds. These interactions not only give rise to high energy barriers for the diffusion and aggregation of the embedded TM atoms to withstand the interference of reaction environments, but also shift the energy levels of TM-d states and regulate the reactivity of the embedded TM atoms. The adsorption of CO, NO, O2 and O correlates well with the weight averaged ene...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
The CO oxidation mechanism on graphene with divacancy (DG) embedded with transition metal from Sc to...
Single-atom catalysts represent the most efficient use of precious metals while at the same time off...
Taking the adsorption of CO, NO, O2 and O as probes, we investigated the electronic structure of tra...
Transition Metal (TM) atoms adsorption on graphene results in a tuning of their electronic, magnetic...
Fine-tuning the electronic and chemical properties of graphene is currently one of the main goals in...
Using DFT simulations, we studied the interaction of a semifullerene C30 and a defected graphene lay...
First-principles electronic structure calculations based on spin-polarized density functional theory...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
[[abstract]]Density functional theory was applied to calculate the adsorption property of metal/hexa...
In this paper, we theoretically studied the electronic and magnetic properties of graphene and graph...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
Despite ample studies devoted to single-atom catalysts (SACs) based on two-dimensional materials, th...
Metal/graphene has been used as a filter membrane exterior to the hydrogen fuel cell to prevent CO p...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
The CO oxidation mechanism on graphene with divacancy (DG) embedded with transition metal from Sc to...
Single-atom catalysts represent the most efficient use of precious metals while at the same time off...
Taking the adsorption of CO, NO, O2 and O as probes, we investigated the electronic structure of tra...
Transition Metal (TM) atoms adsorption on graphene results in a tuning of their electronic, magnetic...
Fine-tuning the electronic and chemical properties of graphene is currently one of the main goals in...
Using DFT simulations, we studied the interaction of a semifullerene C30 and a defected graphene lay...
First-principles electronic structure calculations based on spin-polarized density functional theory...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
[[abstract]]Density functional theory was applied to calculate the adsorption property of metal/hexa...
In this paper, we theoretically studied the electronic and magnetic properties of graphene and graph...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
Despite ample studies devoted to single-atom catalysts (SACs) based on two-dimensional materials, th...
Metal/graphene has been used as a filter membrane exterior to the hydrogen fuel cell to prevent CO p...
The systemic study of the electronic properties of different transition metals (TMs-Sc, Ti, Fe, Co, ...
The CO oxidation mechanism on graphene with divacancy (DG) embedded with transition metal from Sc to...
Single-atom catalysts represent the most efficient use of precious metals while at the same time off...