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Título

Correlation between Oxygen Vacancies and Oxygen Evolution Reaction Activity for a Model Electrode: PrBaCo2O5+δ

AutorMarelli, Elena; Gázquez, Jaume CSIC ORCID; Poghosyan, Emiliya; Müller, Elisabeth; Gawryluk, Dariusz J.; Pomjakushina, Ekaterina; Sheptyakov, Denis; Piamonteze, Cinthia; Aegerter, Dino; Schmidt, Thomas J.; Medarde, Marisa CSIC; Fabbri, Emiliana
Palabras claveActivity descriptor
Electrolyzers
Lattice oxygen evolution reaction
Perovskite
Water splitting
Fecha de publicación21-jun-2021
EditorWiley-VCH
CitaciónAngewandte Chemie - International Edition 60(26): 14609-14619 (2021)
ResumenThe role of the perovskite lattice oxygen in the oxygen evolution reaction (OER) is systematically studied in the PrBaCo2O5+δ family. The reduced number of physical/chemical variables combined with in-depth characterizations such as neutron dif-fraction, O K-edge X-ray absorption spectroscopy (XAS), electron energy loss spectroscopy (EELS), magnetization and scanning transmission electron microscopy (STEM) studies, helps investigating the complex correlation between OER activity and a single perovskite property, such as the oxygen content. Larger amount of oxygen vacancies appears to facilitate the OER, possibly contributing to the mechanism involving the oxidation of lattice oxygen, i.e., the lattice oxygen evolution reaction (LOER). Furthermore, not only the number of vacancies but also their local arrangement in the perovskite lattice influences the OER activity, with a clear drop for the more stable, ordered stoichiometry.
Versión del editorhttp://dx.doi.org/10.1002/anie.202103151
URIhttp://hdl.handle.net/10261/244735
ISSN1433-7851
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