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  4. Photoelectrochemical Degradation and Regeneration of Ca<sub>2</sub>fe<sub>2</sub>o<sub>5</sub> Photocathodes
 
research article

Photoelectrochemical Degradation and Regeneration of Ca2fe2o5 Photocathodes

De Cian, Louise
•
Diez-Garcia, Maria Isabel  
•
Goldman, Benjamin  
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August 15, 2025
RSC Applied Interfaces

Ca2Fe2O5 is a p-type semiconductor with properties suitable for potential application as a photocathode in photoelectrochemical water splitting. However, it suffers from poor stability under working conditions that is still not completely understood. In this work, we investigate the degradation mechanism of thermochemically prepared Ca2Fe2O5 thin film photoelectrodes and examine the effect of surface protective layers. The magnitude of the sacrificial photocurrent generated by Ca2Fe2O5 photocathodes (ca. 0.1 mA cm-2 under 1 sun) strongly decreases after exposure to electrolyte under applied potential for several hours in the dark, and this decline was not found to be preventable using standard protective overlayers. However, electrochemical and in situ UV-vis experiments reveal a dual aspect of the degradation due to both iron reduction and calcium leaching. Kinetically controlling these aspects reveals that a degraded photocathode can be regenerated if only iron reduction occurs but also shows that the degradation is irreversible and leads to a conversion of the Ca2Fe2O5 to iron oxide when calcium leaching prevails.

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Type
research article
DOI
10.1039/d5lf00210a
Web of Science ID

WOS:001550163300001

Author(s)
De Cian, Louise

École Polytechnique Fédérale de Lausanne

Diez-Garcia, Maria Isabel  

École Polytechnique Fédérale de Lausanne

Goldman, Benjamin  

École Polytechnique Fédérale de Lausanne

Sivula, Kevin  

École Polytechnique Fédérale de Lausanne

Date Issued

2025-08-15

Publisher

ROYAL SOC CHEMISTRY

Published in
RSC Applied Interfaces
Subjects

HYDROGEN-PRODUCTION

•

WATER

•

PHOTOANODES

•

CATALYSTS

•

OXIDE

•

LAYER

•

Science & Technology

•

Physical Sciences

•

Technology

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LIMNO  
FunderFunding(s)Grant NumberGrant URL

NCCR Catalysis

180544

Swiss National Science Foundation (SNSF)

Available on Infoscience
August 25, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/253444
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