Related Experiment Video
Updated: Apr 29, 2026

Preparation of Polyoxometalate-based Photo-responsive Membranes for the Photo-activation of Manganese Oxide Catalysts
Published on: August 7, 2018
Electrocatalytic oxygen reduction reaction on perovskite oxides: series versus direct pathway
Tiphaine Poux1, Antoine Bonnefont, Gwénaëlle Kéranguéven
1Institut de Chimie et Procédés pour l'Energie l'Environnement et la Santé, UMR 7515 CNRS-University of Strasbourg, 25 rue Becquerel 67087 Strasbourg Cedex 2 (France), Fax: (+33) 03-68-85-27-61.
Abstract:
The mechanism of the oxygen reduction reaction (ORR) on LaCoO(3) and La(0.8)Sr(0.2)MnO(3) perovskite oxides is studied in 1 M NaOH by using the rotating ring disc electrode (RRDE) method. By combining experimental studies with kinetic modeling, it was demonstrated that on perovskite, as well as on perovskite/carbon electrodes, the ORR follows a series pathway through the intermediate formation of hydrogen peroxide. The escape of this intermediate from the electrode strongly depends on: 1) The loading of perovskite; high loadings lead to an overall 4 e(-) oxygen reduction due to efficient hydrogen peroxide re-adsorption on the active sites and its further reduction. 2) The addition of carbon to the catalytic layer, which affects both the utilization of the perovskite surface and the production of hydrogen peroxide. 3) The type of oxide; La(0.8)Sr(0.2)MnO(3) displays higher (compared to LaCoO(3)) activity in the reduction of oxygen to hydrogen peroxide and in the reduction/oxidation of the latter.
Related Concept Videos
Thermal and Photochemical Electrocyclic Reactions: Overview
Electrolysis
Oxidation-Reduction Reactions
Redox Reactions
Oxidation of Alkenes: Syn Dihydroxylation with Potassium Permanganate
Redox Equilibria: Overview

