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Electrohydrogenation of Carbon Dioxide using a Ternary Pd/Cu2 O-Cu Catalyst.

Jing LiSi-Xuan GuoFeng LiFengwang LiXiaolong ZhangJiantai MaDouglas R MacFarlaneAlan M BondJie Zhang
Published in: ChemSusChem (2019)
A simple one-pot method has been developed to synthesize a palladium/cuprous oxide-copper (Pd/Cu2 O-Cu) material with a well-defined structure, by modification of Cu2 O-Cu with Pd through a galvanic replacement reaction. Compared with the well-known copper/cuprous oxide (Cu/Cu2 O) catalysts, the Pd/Cu2 O-Cu material can catalyze the electroreduction of CO2 into C1 products with much higher faradaic efficiencies at lower overpotentials in a CO2 -saturated 0.5 m NaHCO3 solution. In particular, the highest faradaic efficiencies of 92 % for formate and 30 % for methane were achieved at -0.25 and -0.65 V (vs. the reversible hydrogen electrode), respectively. The improvement is suggested to be the result of a synergistic effect between PdH and the catalytically active copper sites during electrochemical CO2 reduction.
Keyphrases
  • metal organic framework
  • aqueous solution
  • carbon dioxide
  • highly efficient
  • carbon nanotubes
  • solid state