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Curvature-induced Zn 3d Electron Return on Zn−N4 Single-atom Carbon Nanofibers for Boosting Electroreduction of CO2

  • Mingwei Fang
  • , Xingpu Wang
  • , Xueyan Li
  • , Ying Zhu*
  • , Guozheng Xiao
  • , Jingjing Feng
  • , Xiaohui Jiang
  • , Kuilin Lv
  • , Ying Zhu*
  • , Wen Feng Lin*
  • *Corresponding author for this work
  • Beihang University
  • Loughborough University

Research output: Contribution to journalArticlepeer-review

Abstract

The electrochemical CO2 reduction to desired chemical feedstocks is of importance, yet it is still challenging to obtain high production selectivity with low overpotential at a current density surpassing the industry benchmark of 100 mA cm−2. Herein, we constructed a low-cost Zn single-atom anchored on curved N-doped carbon nanofibers (Zn SAs/N−C) by a facile noncovalent self-assembly approach. At a low overpotential of only 330 mV, the Zn SAs/N−C exhibited simultaneously both a high current density up to 121.5 mA cm−2 and a CO FE of 94.7 %, superior to the previous reports. Experiments and DFT calculations revealed that the Zn atoms in Zn−N4 acted as the active sites, while adjacent pyridine-N coupled with Zn−N4 could synergistically decrease the free energy barrier for intermediate *COOH formation. Importantly, the curvature of catalyst induced Zn 3d electrons that were bound to the Zn−N bonds to return to Zn atom, thereby leading to an increase in electron density of Zn and accelerating CO2 electroreduction to CO.

Original languageEnglish
Pages (from-to)603-609
Number of pages7
JournalChemCatChem
Volume13
Issue number2
DOIs
StatePublished - 20 Jan 2021

Keywords

  • Electrochemical CO reduction reaction
  • Zn single-atom catalyst
  • curvature-induced d electron return
  • curved N-doped carbon nanofibers

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