Influence of Electrode Potential on Oxygen Mobility Probed by Polarized Isotopic Exchange in Solid Oxide Electrolyser Cells: Insights for Electro‐Assisted Oxidation Reactions

Author:

Manon Alexandre1,Nau Alexandre1,Belin Thomas1,Mazurier Arnaud1ORCID,Bassat Jean Marc2ORCID,Bion Nicolas1ORCID,Comminges Clément1ORCID

Affiliation:

1. Institut de Chimie des Milieux et Matériaux de Poitiers (IC2MP) Université de Poitiers, CNRS 4 rue Michel Brunet TSA 51106, F86073 Poitiers cedex 9 France

2. Institut de Chimie de la Matière Condensée de Bordeaux (ICMCB) Université de Bordeaux, CNRS 87 Avenue du Dr. Albert Schweitzer F 33600 Pessac France

Abstract

AbstractOxygen mobility was studied by oxygen isotopic exchange on three electrodes used in Solid Oxide Electrolyser Cells under polarization (La0.8Sr0.2MnO3 (LSM), La0.6Sr0.4Co0.2Fe0.8O3‐δ (LSCF) and La2NiO4+δ (LNO)). The rate of the surface and the bulk mechanisms for oxygen mobility is depending on the type of conductivity (electronic conduction or mixed ionic and electronic conductivity). It is shown that a one oxygen atom exchange is dominant for the surface path whereas a two oxygen atoms mechanism dominates for the bulk path. The rate constant for the bulk path is much higher than the one for the surface path by two orders of magnitude. Additionally, polarized oxygen isotopic exchange revealed that electrode overvoltage increases significantly the rate constant for the surface path, whereas its impact on the bulk path is negligible.

Publisher

Wiley

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