4.8 Article

Understanding the Origin of Highly Selective CO2 Electroreduction to CO on Ni,N-doped Carbon Catalysts

期刊

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
卷 59, 期 10, 页码 4043-4050

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201912857

关键词

CO2 reduction; electrocatalysis; heterogeneous Catalysis; doped carbon; X-ray absorption spectroscopy

资金

  1. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences, Chemical Sciences, Geosciences, and Biosciences Division
  2. Joint Center for Artificial Photosynthesis, a DOE Energy Innovation Hub through the Office of Science of the US Department of Energy [DE-SC0004993]
  3. National Science Foundation [ECCS-1542152]
  4. US Department of Energy, Office of Science, Office of Basic Energy Science [DE-AC02-76SF00515]
  5. Canada Foundation for Innovation under the Major Science Initiative program
  6. NSERC
  7. McMaster University

向作者/读者索取更多资源

Ni,N-doped carbon catalysts have shown promising catalytic performance for CO2 electroreduction (CO2R) to CO; this activity has often been attributed to the presence of nitrogen-coordinated, single Ni atom active sites. However, experimentally confirming Ni-N bonding and correlating CO2 reduction (CO2R) activity to these species has remained a fundamental challenge. We synthesized polyacrylonitrile-derived Ni,N-doped carbon electrocatalysts (Ni-PACN) with a range of pyrolysis temperatures and Ni loadings and correlated their electrochemical activity with extensive physiochemical characterization to rigorously address the origin of activity in these materials. We found that the CO2R to CO partial current density increased with increased Ni content before plateauing at 2 wt % which suggests a dispersed Ni active site. These dispersed active sites were investigated by hard and soft X-ray spectroscopy, which revealed that pyrrolic nitrogen ligands selectively bind Ni atoms in a distorted square-planar geometry that strongly resembles the active sites of molecular metal-porphyrin catalysts.

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