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  4. Oxygen Isotope Labeling Experiments Reveal Different Reaction Sites for the Oxygen Evolution Reaction on Nickel and Nickel Iron Oxides
 
research article

Oxygen Isotope Labeling Experiments Reveal Different Reaction Sites for the Oxygen Evolution Reaction on Nickel and Nickel Iron Oxides

Lee, Seunghwa  
•
Banjac, Karla  
•
Lingenfelder, Magali  
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July 22, 2019
Angewandte Chemie International Edition

Nickel iron oxide is considered a benchmark nonprecious catalyst for the oxygen evolution reaction (OER). However, the nature of the active site in nickel iron oxide is heavily debated. Here we report direct spectroscopic evidence for the different active sites in Fe-free and Fe-containing Ni oxides. Ultrathin layered double hydroxides (LDHs) were used as defined samples of metal oxide catalysts, and O-18-labeling experiments in combination with in situ Raman spectroscopy were employed to probe the role of lattice oxygen as well as an active oxygen species, NiOO-, in the catalysts. Our data show that lattice oxygen is involved in the OER for Ni and NiCo LDHs, but not for NiFe and NiCoFe LDHs. Moreover, NiOO- is a precursor to oxygen for Ni and NiCo LDHs, but not for NiFe and NiCoFe LDHs. These data indicate that bulk Ni sites in Ni and NiCo oxides are active and evolve oxygen via a NiOO- precursor. Fe incorporation not only dramatically increases the activity, but also changes the nature of the active sites.

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Type
research article
DOI
10.1002/anie.201903200
Web of Science ID

WOS:000476452700043

Author(s)
Lee, Seunghwa  
Banjac, Karla  
Lingenfelder, Magali  
Hu, Xile  
Date Issued

2019-07-22

Publisher

Wiley-VCH Verlag GmbH

Published in
Angewandte Chemie International Edition
Volume

58

Issue

30

Start page

10295

End page

10299

Subjects

Chemistry, Multidisciplinary

•

Chemistry

•

active site

•

electrocatalysis

•

nickel oxides

•

oxygen evolution reaction

•

raman spectroscopy

•

water oxidation

•

oxyhydroxide electrocatalysts

•

reaction dynamics

•

lattice oxygen

•

redox states

•

fe-sites

•

ni

•

impurities

•

catalysts

•

behavior

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSEN  
LSCI  
Available on Infoscience
August 3, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/159525
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