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Governing principles of hydration of mixed proton conducting Co-based double perovskites

Abstract

Proton ceramic electrochemical cells PCECs hold promise for efficient, sustainable production and use of hydrogen. The positive electrodes are mixed proton conducting perovskites that facilitate water splitting and oxygen reduction, but the factors that determine the protonation are poorly under stood. Here, we establish the governing principles of protonation through a study of hydration of 45 double perovskites with the general formula AIAIICo2O6 δ, having Ba or Ba+Sr on AI and a mix of rare earths (Y and lanthanides Ln =La,Pr,Nd,Sm,Gd,Dy,Tb,Lu)onAII. We show how hydration is coupled to the A-site basicity and disorder as well as population of electron holes in the Co-O bond (Co oxidation state), promoted by a closed or semiclosed Ln 4f shell, i.e., Ln =La,Gd,Lu.
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Category

Academic article

Language

English

Author(s)

  • Ragnar Strandbakke
  • Sebastian Lech Wachowski
  • Maria Balaguer
  • Lasse Vines
  • Thomas Neset Sky
  • Iga Szpunar
  • Patricia Almeida Carvalho
  • Aleksandra Mielewczyk-Gryń
  • Magnus Helgerud Sørby
  • Maria Gazda
  • Jose M. Serra
  • Truls Norby

Affiliation

  • SINTEF Industry / Sustainable Energy Technology
  • Chalmers University of Technology
  • Gdansk University of Technology
  • Spanish National Research Council
  • University of Oslo
  • Institute for Energy Technology

Year

2026

Published in

Nature Communications

Volume

17

Page(s)

1 - 10

View this publication at Norwegian Research Information Repository