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Room-temperature activation of the C-H bond in the dehydrogenation of ethane over a Cu/TiO 2 catalyst.

Lei SongRonghao ZhangChangan ZhouGuoqiang ShuKui MaHairong Yue
Published in: Chemical communications (Cambridge, England) (2022)
A novel photocatalytic system of Cu/TiO 2 for activation the C-H bond in the dehydrogenation of ethane to ethylene at room temperature is proposed. The optimized 1%-Cu/TiO 2 catalyst achieved C 2 H 6 conversion of 1.70%, C 2 H 4 selectivity of 98.41%, and exhibited excellent stability. The active site Cu δ + showed high dispersion on the TiO 2 surface. Theoretical calculations and in situ diffuse reflectance infrared Fourier transform spectroscopy revealed a reaction mechanism: C 2 H 6 is first activated by adsorption over the Cu 4C /TiO 2 catalyst with elongation of the C-H bond, attacked by h + /˙OH to form ethyl radicals, which are then converted to C 2 H 4 .
Keyphrases
  • room temperature
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  • reduced graphene oxide
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  • transition metal
  • solid state