• Journal of Inorganic Materials
  • Vol. 36, Issue 1, 88 (2021)
Yaxin LIU1、2, Min WANG1、2, Meng SHEN1、2, Qiang WANG1、2, and Lingxia ZHANG1、2、*
Author Affiliations
  • 1State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
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    DOI: 10.15541/jim20200142 Cite this Article
    Yaxin LIU, Min WANG, Meng SHEN, Qiang WANG, Lingxia ZHANG. Bi-doped Ceria with Increased Oxygen Vacancy for Enhanced CO2 Photoreduction Performance[J]. Journal of Inorganic Materials, 2021, 36(1): 88 Copy Citation Text show less
    Time-dependent CO evolution over CeO2, Ce1-xBixO2-δ and Bi2O3
    1. Time-dependent CO evolution over CeO2, Ce1-xBixO2-δ and Bi2O3
    TEM images of (a) CeO2 and (b) Ce0.6Bi0.4O2-δ, (c) EDX elemental mapping images of Ce0.6Bi0.4O2-δ
    2. TEM images of (a) CeO2 and (b) Ce0.6Bi0.4O2-δ, (c) EDX elemental mapping images of Ce0.6Bi0.4O2-δ
    High resolution XPS spectra of (a) Ce3d, (b) Bi4f, (c) O1s on the surface of Ce0.6Bi0.4O2-δ and (d) Raman spectra of CeO2 and Ce0.6Bi0.4O2-δ
    3. High resolution XPS spectra of (a) Ce3d, (b) Bi4f, (c) O1s on the surface of Ce0.6Bi0.4O2-δ and (d) Raman spectra of CeO2 and Ce0.6Bi0.4O2-δ
    In-situ FT-IR spectra of CO2 adsorption on the surface of (a) CeO2 and (b) Ce0.6Bi0.4O2-δ (the spectra of the samples swept by N2 for 1 h as the background); In-situ FT-IR spectra of CO2 photoreduction on (c) CeO2 and (d) Ce0.6Bi0.4O2-δ at different irradiation time (The spectra collected at 0 min of irradiation in humid CO2 as background)
    4. In-situ FT-IR spectra of CO2 adsorption on the surface of (a) CeO2 and (b) Ce0.6Bi0.4O2-δ (the spectra of the samples swept by N2 for 1 h as the background); In-situ FT-IR spectra of CO2 photoreduction on (c) CeO2 and (d) Ce0.6Bi0.4O2-δ at different irradiation time (The spectra collected at 0 min of irradiation in humid CO2 as background)
    Scheme of the possible mechanism of CO2 reduction on Ce0.6Bi0.4O2-δ
    5. Scheme of the possible mechanism of CO2 reduction on Ce0.6Bi0.4O2-δ
    XRD patterns of CeO2 and Ce1-xBixO2-δ
    S1. XRD patterns of CeO2 and Ce1-xBixO2-δ
    EPR spectra of CeO2 and Ce1-xBixO2-δ
    S2. EPR spectra of CeO2 and Ce1-xBixO2-δ
    UV-Vis absorption spectra of CeO2 and Ce1-xBixO2-δ with inset showing the plots of (αhυ)2versus photon energy
    S3. UV-Vis absorption spectra of CeO2 and Ce1-xBixO2-δ with inset showing the plots of (αhυ)2versus photon energy
    (a) Mott-Schottky plots and (b) Electrochemical impedance spectroscopy (EIS) Nyquist plots (-0.4 V (vs Ag/AgCl), in dark) of CeO2 and Ce0.6Bi0.4O2-δ
    S4. (a) Mott-Schottky plots and (b) Electrochemical impedance spectroscopy (EIS) Nyquist plots (-0.4 V (vs Ag/AgCl), in dark) of CeO2 and Ce0.6Bi0.4O2-δ
    Transient photocurrent responses of CeO2 and Ce0.6Bi0.4O2-δ
    S5. Transient photocurrent responses of CeO2 and Ce0.6Bi0.4O2-δ
    Yaxin LIU, Min WANG, Meng SHEN, Qiang WANG, Lingxia ZHANG. Bi-doped Ceria with Increased Oxygen Vacancy for Enhanced CO2 Photoreduction Performance[J]. Journal of Inorganic Materials, 2021, 36(1): 88
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