吸着促進型酸化ビスマスによる広範な電位窓での効率的なCO₂からギ酸への変換
Dan Lei1, Yilong Ren1, Guiwei He1
1International Research Center for Renewable Energy, State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, P. R. China.
Abstract:
Electrochemical conversion of carbon dioxide (CO2) into high-value-added chemicals using clean energy is a processing method to reduce carbon emissions and store energy. The unsatisfactory adsorption and activation of CO2 suppress electrochemical reduction over a narrow potential window. Herein, we synthesized CO2 adsorption-enhanced bismuth oxide nanosheets (syn-Bi2O3) using a one-pot low-temperature water bath method. The syn-Bi2O3 exhibited marked Faradic efficiency (FEformate) over 94% in a wide potential window from -0.43 to -1.31 V versus RHE in the flow cell, and demonstrated an appreciable FEformate of 94.5% at a partial current density of 661.9 mA cm-2. The in situ spectroscopy and theoretical calculation unraveled the distinct formate production performance of the syn-Bi2O3 catalyst, which was contributed by its adsorption of CO2 and promoting the subsequent formation of intermediates. Furthermore, coupled with the simulated solar cell with the 4 layer 3-cell stacks, the solar to formate and overall solar-to-fuel reach 19.34% and 20.23% with over 0.21 A, respectively. This work provides insights into the practical application of electrochemical CO2 reduction for formate production driven by solar energy.
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