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Boosting CO<sub>2</sub>Electroreduction over a Cadmium Single‐Atom Catalyst by Tuning of the Axial Coordination Structure

149

Citations

72

References

2021

Year

Abstract

Guided by first-principles calculations, it was found that Cd single-atom catalysts (SACs) have excellent performance in activating CO<sub>2</sub> , and the introduction of axial coordination structure to Cd SACs cannot only further decrease the free energy barrier of CO<sub>2</sub> reduction, but also suppress the hydrogen evolution reaction (HER). Based on the above discovery, we designed and synthesized a novel Cd SAC that comprises an optimized CdN<sub>4</sub> S<sub>1</sub> moiety incorporated in a carbon matrix. It was shown that the catalyst exhibited outstanding performance in CO<sub>2</sub> electroreduction to CO. The faradaic efficiency (FE) of CO could reach up to 99.7 % with a current density of 182.2 mA cm<sup>-2</sup> in a H-type electrolysis cell, and the turnover frequency (TOF) value could achieve 73000 h<sup>-1</sup> , which was much higher than that reported to date. This work shows a successful example of how to design highly efficient catalysts guided by theoretical calculations.

References

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