Here, we report the deposition of SrCoO3-δ perovskites thin films by chemical bath deposition, employed as electrocatalytic layers for oxygen evolution reaction (OER) in alkaline water splitting. The effect of Co excess and Ti-doping on the crystalline structure, composition and electrochemical performances was investigated. The former had effect only on electrochemical performance whilst Ti-doping, above 3 %, induced the formation of a secondary phase. Among all the investigated samples, SrCoO3-δ:Co3O4 (SCO:CB) sample showed the best electrochemical performance toward OER in 1 M KOH aqueous solution, reporting an onset overpotential, ηonset, of 284 mV and a Tafel slope of 59 mV dec 1. In contrast, Ti-doping (i.e. 3 %, SCT:CB 3 sample) drastically improved stability of the electrocatalytic layer, enabling 24 h of continuous operation, demonstrating the effectiveness of doping strategy to enhance SrCoO3-δ perovskites durability. XPS analyses revealed that degradation of electrochemical performance of thin films is related to Sr leaching, even if Ti-doping decreased leached Sr amount improving layers stability.

SrCoO3-δ and SrCo1-xTixO3-δ perovskites as electrocatalytic materials for oxygen evolution reaction in alkaline environment / Volanti, Valentina Maria; Semenova, Anastasiia; Zaffora, Andrea; Santamaria, Monica; Valov, Ilia. - In: MATERIALS CHEMISTRY AND PHYSICS. - ISSN 0254-0584. - ELETTRONICO. - volume 348 (2026):(2025). [10.1016/j.matchemphys.2025.131713]

SrCoO3-δ and SrCo1-xTixO3-δ perovskites as electrocatalytic materials for oxygen evolution reaction in alkaline environment

Valentina Maria Volanti;
2025

Abstract

Here, we report the deposition of SrCoO3-δ perovskites thin films by chemical bath deposition, employed as electrocatalytic layers for oxygen evolution reaction (OER) in alkaline water splitting. The effect of Co excess and Ti-doping on the crystalline structure, composition and electrochemical performances was investigated. The former had effect only on electrochemical performance whilst Ti-doping, above 3 %, induced the formation of a secondary phase. Among all the investigated samples, SrCoO3-δ:Co3O4 (SCO:CB) sample showed the best electrochemical performance toward OER in 1 M KOH aqueous solution, reporting an onset overpotential, ηonset, of 284 mV and a Tafel slope of 59 mV dec 1. In contrast, Ti-doping (i.e. 3 %, SCT:CB 3 sample) drastically improved stability of the electrocatalytic layer, enabling 24 h of continuous operation, demonstrating the effectiveness of doping strategy to enhance SrCoO3-δ perovskites durability. XPS analyses revealed that degradation of electrochemical performance of thin films is related to Sr leaching, even if Ti-doping decreased leached Sr amount improving layers stability.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/3004458
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