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Surface Hydroxyl Relay Promotes Acidic Water Oxidation

作者:Haolei Zhang, Moxing Cheng, Chenwei Wang, Yichao Lin, Yin’an Zhu, Linjuan Zhang, Xiaowu Huang, Luming Peng, Ziqi Tian, Liang Chen · 发表于:Nano Letters · 年份:2025 · DOI:10.1021/acs.nanolett.5c04491 · 被引用次数:6 · 研究领域:Electrocatalysts for Energy Conversion、Hybrid Renewable Energy Systems、Ammonia Synthesis and Nitrogen Reduction

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.