Applied Catalysis2022,Vol.3048.DOI:10.1016/j.apcatb.2021.120963

Electroreduction of low concentration CO2 at atomically dispersed Ni-N-C catalysts with nanoconfined ionic liquids

Zhao, Yong Ren, Wenhao Zhao, Chuan Sun, Qian
Applied Catalysis2022,Vol.3048.DOI:10.1016/j.apcatb.2021.120963

Electroreduction of low concentration CO2 at atomically dispersed Ni-N-C catalysts with nanoconfined ionic liquids

Zhao, Yong 1Ren, Wenhao 1Zhao, Chuan 1Sun, Qian1
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作者信息

  • 1. Univ New South Wales
  • 折叠

Abstract

Most studies on electrochemical CO(2 )reduction reaction use pure CO2, which requires extra energy for CO2 capture and enrichment from atmosphere. Herein, nanoconfined ionic liquids are introduced into porous atomically dispersed nickel-nitrogen-carbon (Ni-N-C) catalysts to enrich local CO2 concentration and increase the CO2RR kinetics. A series of high-CO2-solubility ionic liquids (ILs) were impregnated into the pores of the columnar Ni-N-C catalyst to alter the CO2-Ni sites interactions and create a solid/liquid interface with high CO2 concentration. The optimal Ni-N-C/[Bmim][PF6] composite outperforms the Ni-N-C catalyst for pure CO2 electroreduction with a maximum FECO of 99.6% and 2.7-fold larger j(CO). The high solubility of CO2 in ILs compared to aqueous electrolyte enables direct electrolysis of CO2 at low concentrations. When fed with 5-10% (v/v) CO2, the Ni-N-C/[Bmim][PF6] composite exhibited up to 1.5-fold higher FECO and a 68% increase of j(CO), in comparison to Ni-N-C, and robust stability over 30 h.

Key words

CO2 electroreduction/Ni-N-C/Ionic liquids/Single atom catalyst/CO2 capture/CARBON-DIOXIDE/ELECTROCHEMICAL REDUCTION/AQUEOUS-SOLUTIONS/METAL/SOLUBILITY/FORMATE/DESIGN/SITES/SCALE/WATER

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出版年

2022
Applied Catalysis

Applied Catalysis

ISSN:0926-3373
被引量15
参考文献量59
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