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Title: Corrosion-resistant MoO₃/Fe₂O₃/MoS₂ heterojunctions stabilize OH‾ adsorption for efficient light-assisted seawater electrooxidation
Authors: Li, Z 
Tao, W
Wang, Y 
Ye, X 
Chen, Y 
Han, B
Lee, LYS 
Issue Date: 16-Jul-2025
Source: Journal of the American Chemical Society, 16 July 2025, v. 147, no. 28, p. 24461-24472
Abstract: Direct seawater electrolysis holds promise for sustainable hydrogen production, yet challenges such as severe chlorine corrosion on the anode and high energy barriers for oxygen evolution reaction (OER) limit its operational time and efficiency. Herein, we present MoO3/Fe2O3/MoS2 heterojunctions to mitigate chlorine-induced corrosion and achieve effective photoelectric synergy. The in situ leached MoO42– and SO42– inhibitors reduce Cl– adsorption, thereby ensuring high OER selectivity, while the MoO3/Fe2O3/MoS2 balances the repelling effects of these inhibitors, facilitating OH– adsorption and widening the overpotential gap between water oxidation and chlorine oxidation. The MoO3/Fe2O3/MoS2 catalyst outperforms its Fe2O3 counterpart in terms of lifespan, maintaining stability at 100 and 300 mA cm–2 for 100 and 500 h, respectively. Additionally, built-in electric fields formed at the interfaces lower interfacial resistance and extend the lifetime of photogenerated carriers by 1.47-fold, allowing for a 20.4% increase in seawater OER current density under light irradiation. Our findings offer a viable strategy for designing high-performance electrocatalysts for light-assisted seawater electrolysis.
Publisher: American Chemical Society
Journal: Journal of the American Chemical Society 
ISSN: 0002-7863
EISSN: 1520-5126
DOI: 10.1021/jacs.5c04085
Rights: © 2025 The Authors. Published by American Chemical Society
This is article is licensed under CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/)
The following publication Li, Z., Tao, W., Wang, Y., Ye, X., Chen, Y., Han, B., & Lee, L. Y. S. (2025). Corrosion-Resistant MoO3/Fe2O3/MoS2 Heterojunctions Stabilize OH–Adsorption for Efficient Light-Assisted Seawater Electrooxidation. Journal of the American Chemical Society, 147(28), 24461-24472 is available at https://doi.org/10.1021/jacs.5c04085.
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