location: Current position: Home >> Scientific Research >> Paper Publications

Unique Reactivity of Transition Metal Atoms Embedded in Graphene to CO, NO, O-2 and O Adsorption: A First- Principles Investigation

Hits:

Indexed by:Journal Papers

Date of Publication:2015-10-01

Journal:MOLECULES

Included Journals:PubMed、SCIE、Scopus

Volume:20

Issue:10

Page Number:19540-19553

ISSN No.:1420-3049

Key Words:graphene; defects; transition metal; single atom catalysis; CO oxidation

Abstract:Taking the adsorption of CO, NO, O-2 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, O-2 and O correlates well with the weight averaged energy level of TM-d states, showing the crucial role of interfacial TM-C interactions on manipulating the reactivity of embedded TM atoms. These findings pave the way for the developments of effective monodispersed atomic TM composites with high stability and desired performance for gas sensing and catalytic applications.

Pre One:以层状硅酸盐为主体的无机-有机杂化材料

Next One:稀土钼钒氧簇化合物的合成与性能研究