4.7 Article

Hydrogenation of CO2 to formic acid over a Cu-embedded graphene: A DFT study

期刊

APPLIED SURFACE SCIENCE
卷 364, 期 -, 页码 241-248

出版社

ELSEVIER
DOI: 10.1016/j.apsusc.2015.12.117

关键词

CO2 hydrogenation; Graphene; Copper; Catalysis; DFT

资金

  1. Thailand Research Fund [RSA5780069]
  2. Kasetsart University Research and Development Institute (KURDI)
  3. Faculty of Science, Kasetsart University
  4. National Science and Technology Development Agency (NANOTEC Center for Nanoscale Materials Design for Green Nanotechnology - National Nanotechnology Center)
  5. PTT group (PTT Public Company Limited)
  6. PTT group (PTT Exploration Production)
  7. PTT group (PTT Global Chemical)
  8. PTT group (IRPC Thaioil)
  9. Commission on Higher Education, Ministry of Education (the National Research University Project of Thailand (NRU))

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DFT calculations were used to investigate the properties of the atomic copper embedded in the surface of graphene (Cu/dG) and the catalytic reaction pathway for the CO2 hydrogenation to formic acid (FA). The Cu/dG was active for the adsorption of the hydrogen molecule (H-2), and provided a reaction site for the heterolytic cleavage of H-2, leading to the formation of Cu-H deposited on a singly hydrogenated vacancy graphene (Cu-H/H-dG). The protonation of CO2 takes place facilely over the generated metal-hydride species (Cu-H). Under the dilution of H-2, the catalytic process would be hampered by the formation of copper-formate deposited on the H-dG due mainly to the very high energy demand for the transformation of the copper-formate to FA through the protonation from the H-dG. It was further found that the presence of H-2 in the system plays a significant role in producing the FA on the Cu/dG catalyst. The copper-formate species can be converted into formic acid via the heterolytic cleavage of the second hydrogen molecule, yielding the FA and Cu-H species. (C) 2015 Elsevier B.V. All rights reserved.

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