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Identification of Highly Active Fe Sites in (Ni,Fe)OOH for Electrocatalytic Water Splitting

Journal of the American Chemical Society · 2015 · Vol. 137(3) · pp. 1305–1313
Daniel FriebelMary W. LouieMichal BajdichKai E. SanwaldYun CaiAnna M. WiseMu‐Jeng ChengDimosthenis SokarasTsu-Chien WengRoberto Alonso‐MoriRyan C. DavisJohn BargarJens K. NørskovAnders NilssonAlexis T. Bell

Abstract

Highly active catalysts for the oxygen evolution reaction (OER) are required for the development of photoelectrochemical devices that generate hydrogen efficiently from water using solar energy. Here, we identify the origin of a 500-fold OER activity enhancement that can be achieved with mixed (Ni,Fe)oxyhydroxides (Ni1–xFexOOH) over their pure Ni and Fe parent compounds, resulting in one of the most active currently known OER catalysts in alkaline electrolyte. Operando X-ray absorption spectroscopy (XAS) using high energy resolution fluorescence detection (HERFD) reveals that Fe3+ in Ni1–xFexOOH occupies octahedral sites with unusually short Fe–O bond distances, induced by edge-sharing with surrounding [NiO6] octahedra. Using computational methods, we establish that this structural motif results in near optimal adsorption energies of OER intermediates and low overpotentials at Fe sites. By contrast, Ni sites in Ni1–xFexOOH are not active sites for the oxidation of water.

Electrocatalysts for Energy ConversionElectrochemical Analysis and ApplicationsAdvanced battery technologies researchChemistryOxygen evolutionX-ray absorption spectroscopyWater splittingActive siteCatalysisOctahedronInorganic chemistryElectrolyteAdsorption

Funding

  • U.S. Department of Energy
  • University of California
  • National Energy Research Scientific Computing Center
  • Office of Science
  • Basic Energy Sciences
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