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Unveiling the Activity Origin of Iron Nitride as Catalytic Material for Efficient Hydrogenation of CO2 to C2+ Hydrocarbons.

Bohang ZhaoMengyao SunFanpeng ChenYanmei ShiYifu YuXingang LiBin Zhang
Published in: Angewandte Chemie (International ed. in English) (2021)
Developing efficient catalytic materials and unveiling the active species are significant for selective hydrogenation of CO2 to C2+ hydrocarbons. Fe2 N@C nanoparticles were reported to exhibit outstanding performance toward selective CO2 hydrogenation to C2+ hydrocarbons (C2+ selectivity: 53.96 %; C2 -C4 = selectivity, 31.03 %), outperforming corresponding Fe@C. In situ X-ray diffraction, ex situ Mössbauer and X-ray photoelectron spectra revealed that iron nitrides were in situ converted to highly active iron carbides, which acted as the real active species. Moreover, the combined results of in situ diffuse reflectance infrared Fourier transform spectroscopy and control experiments suggested an in situ formed carbonyl iron-mediated conversion mechanism from iron nitrides to iron carbides.
Keyphrases
  • iron deficiency
  • high resolution
  • quantum dots
  • crystal structure
  • single molecule
  • mass spectrometry
  • gold nanoparticles
  • density functional theory
  • reduced graphene oxide
  • visible light