• Journal of Inorganic Materials
  • Vol. 39, Issue 9, 979 (2024)
Xin YANG1,2,3, Chunqiu HAN2,4, Yuehan CAO2,*, Zhen HE2, and Ying ZHOU1,2,*
Author Affiliations
  • 11. National Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China
  • 22. School of New Energy and Materials, Southwest Petroleum University, Chengdu 610500, China
  • 33. Tianfu Yongxing Laboratory, Chengdu 610213, China
  • 44. College of Materials and Chemical Engineering, Three Gorges University, Yichang 443002, China
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    DOI: 10.15541/jim20240102 Cite this Article
    Xin YANG, Chunqiu HAN, Yuehan CAO, Zhen HE, Ying ZHOU. Recent Advances in Electrocatalytic Nitrate Reduction to Ammonia Using Metal Oxides[J]. Journal of Inorganic Materials, 2024, 39(9): 979 Copy Citation Text show less
    Main process of electrocatalytic production for N2/NH3
    1. Main process of electrocatalytic production for N2/NH3
    Metal oxides for selective regulation of eNitRR
    2. Metal oxides for selective regulation of eNitRR
    Catalytic performance of Cu/Cu2O NWAs[63]
    3. Catalytic performance of Cu/Cu2O NWAs[63]
    Characterization of catalytic performance of Cu/Cu2O[51]
    4. Characterization of catalytic performance of Cu/Cu2O[51]
    Characterization of catalytic performance of Fe3O4/SS[48]
    5. Characterization of catalytic performance of Fe3O4/SS[48]
    Characterization of catalytic performance of Cu-Fe3O4[49]
    6. Characterization of catalytic performance of Cu-Fe3O4[49]
    Characterization of catalytic performance of TiO2-x[40]
    7. Characterization of catalytic performance of TiO2-x[40]
    Characterization of catalytic performance of PdCu NPs/TiO2-x[43]
    8. Characterization of catalytic performance of PdCu NPs/TiO2-x[43]
    CatalystNH3 yield rate Faraday efficiency, FE/%Stability/hRef.
    TiO2-x45.00 µmol·h-1·mg-185.0016.00[40]
    Ru/TiO235.35 µmol·h-1·cm-2>90.004.50[41]
    Pd/TiO266.00 μmol·h-1·cm-292.0012.00[42]
    PdCu/TiO2-x322.70 μmol·h-1·cm-280.1048.00[43]
    Co-TiO2/TP1127.00 μmol·h-1·cm-298.2024.00[44]
    Fe2TiO50.73 mmol·h-1·mg-187.606.00[45]
    ZnCr2O41197.65 μmol·h-1·mg-190.2015.00[46]
    Fe2O3328.17 μmol·h-1·cm-269.805.00[47]
    Fe3O4/SS596.76 μmol·h-1·cm-291.504.00[48]
    Cu/Fe3O410.56 mmol·h-1·mg-1100.0-[49]
    NiO41.83 mmol·h-1·mg-194.7072.00[32]
    Co3O4/NiO6.93 μmol·h-1·mg-1-3.00[50]
    Cu/Cu2O219.80 μmol·h-1·cm-293.9012.00[51]
    Cu2O0.14 mmol·h-1·cm-299.8020.00[52]
    PdCu/Cu2O190.00 μmol·h-1·cm-294.3012.00[28]
    CoO NC/graphene25.63 mmol·h-1·mg-1>98.006.00[53]
    Cu/Co3O41.11 mmol·h-1·cm-2100.7060.00[54]
    S/Co3O4174.20 μmol·h-1·mg-189.907.00[55]
    Cu/MnOx1.72 mmol·h-1·mg-186.206.00[56]
    CuO@MnO2/CF0.24 mmol·h-1·cm-294.9010.00[57]
    Table 1. Properties of metal oxides used in the study of eNitRR
    Xin YANG, Chunqiu HAN, Yuehan CAO, Zhen HE, Ying ZHOU. Recent Advances in Electrocatalytic Nitrate Reduction to Ammonia Using Metal Oxides[J]. Journal of Inorganic Materials, 2024, 39(9): 979
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