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◆ Nano Letters2025-11-12· Catalysis

Surface Hydroxyl Relay Promotes Acidic Water Oxidation

Haolei Zhang, Moxing Cheng, Chenwei Wang, Yichao Lin, Yin’an Zhu, Linjuan Zhang, Xiaowu Huang, Luming Peng, Ziqi Tian, Liang Chen

原始摘要(英文原文)· Original abstract
Ruthenium (Ru) is a promising iridium (Ir) alternative for proton exchange membrane water electrolysis (PEMWE), but Ru-based catalysts face an OER stability issue in acidic conditions. We addressed this using a hydroxyl relay strategy on RuO 2 surfaces via boron (B) doping. The three-coordinate B sites with empty p orbitals readily form coordination bonds with hydroxyl groups. These B sites relay *OH to neighboring Ru sites, facilitating the formation of the OOH intermediate, lowering the OER energy barrier, and preventing Ru overoxidation. Furthermore, the B dopants create a robust B–O–Ru local structure, which significantly stabilizes the catalyst framework. Consequently, the B-doped RuO 2 nanosheets (B-RuO 2 NS) show an ultralow overpotential (190 mV at 10 mA cm –2 ) and exceptional stability (1600 h at 10 mA cm –2, 200 h at 1 A cm –2 ). This work demonstrates how targeted hydroxyl relay engineering can simultaneously enhance activity and stability, offering a viable pathway to develop high-performance and durable Ru catalysts for industrial PEMWE applications.
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