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Updated: May 9, 2026

Influence of Hybrid Perovskite Fabrication Methods on Film Formation, Electronic Structure, and Solar Cell Performance
Published on: February 27, 2017
Insight into the Activity and Stability Behaviors of the PbCrO4 Film Photoanode during Solar Water Oxidation in
Jiahe Li1, Yujie Huang1, Haijun Wang2
1College of Materials and New Energy, Chongqing University of Science and Technology, Chongqing 401331, China.
Abstract:
Monoclinic PbCrO4 is an n-type semiconductor with a band gap of ∼2.2 eV, which has attracted research attentions as photoanode material for solar water splitting in recent years, but few works consider the correlation of PbCrO4 photoanodes' activity and stability with electrolytes. Herein, typical monoclinic PbCrO4 films were prepared by a drop-casting method and investigated as photoanodes for solar water splitting in sodium sulfate (NSO), phosphate-buffered saline (PBS), potassium bicarbonate (KHCO), sodium borate (NBO), and potassium hydrogen phthalate (KHP) aqueous electrolyte. The water oxidation activity of the PbCrO4 film photoanode was found to be closely related to the electrolyte, and a relatively higher activity was observed on the PbCrO4 photoanode in PBS and KHP. However, in the five types of electrolytes, the PbCrO4 film photoanode had unsatisfactory stability due to the presence of photocorrosion, composition transformation, and dissolution, posing a significant challenge to the application of PbCrO4 in solar water splitting. In the Na2SO3/KHP mixing electrolyte, improved and stable photocurrent can be achieved on the PbCrO4 film photoanode for the oxidation of SO32- into SO42-. The present work reveals the objective water splitting behaviors of the PbCrO4 film photoanode in typical electrolytes, which could provide helpful reference and act as a reminder for the research of PbCrO4 and similar photoanode materials.
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