4.6 Article

Computational investigations of Cu-embedded MoS2 sheet for CO oxidation catalysis

Journal

JOURNAL OF MATERIALS SCIENCE
Volume 53, Issue 13, Pages 9578-9588

Publisher

SPRINGER
DOI: 10.1007/s10853-018-2269-5

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Funding

  1. ABV-Indian Institute of Information Technology and Management
  2. UGC

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Elevated amount of CO levels in the atmosphere poses serious health and environmental hazards. Oxidation of CO using suitable catalysts is one of the methods to control it. By means of DFT calculations, single Cu atom doped in S vacancy of MoS2 nanosheet is studied for CO oxidation catalysis. Cu atom is strongly confined at the S-defective site of the MoS2 sheet, possessing high energy barrier for the diffusion to its neighboring sites. Adsorption energy, charge transfer and orbital hybridization of CO and O-2 molecules adsorbed Cu-doped MoS2 sheet reveal that O-2 is relatively more strongly adsorbed than CO. High adsorption energy of O-2 (- 2.115 eV) and large charge transfer between O-2 and Cu-MoS2 sheet (0.493e), compared to CO, make O-2 adsorption more favorable, which extenuates CO poisoning and hence helps in the efficient CO oxidation process. The complete oxidation of CO takes place in two steps: with activation energy of 0.201 eV, succeeded by without any energy barrier. Our results show that the basal plane of MoS2 sheet gets activated by embedding it with Cu metal, which can catalyze CO oxidation reaction effectively and without poisoning issues. The high activity, stability and low cost features can possibly encourage fabricating MoS2-based catalysts for CO oxidation reaction.

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