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Title: Regulating Ru-Ru distance in RuO2 catalyst by lattice hydroxyl for efficient water oxidation
Authors: She, S 
Chen, HC
Chen, C 
Zhu, Y 
Chen, G
Song, Y 
Xiao, Y 
Lin, Z 
Zu, D
Peng, L 
Li, H 
Zhu, Y 
Tsang, YH 
Huang, H
Issue Date: 20-May-2025
Source: ACS nano, 20 May 2025, v. 19, no. 19, p. 18513-18521
Abstract: Highly active and durable electrocatalysts for the oxygen evolution reaction (OER) are crucial for proton exchange membrane water electrolysis (PEMWE). While doped RuO2 catalysts demonstrate good activity and stability, the presence of dopants limits the number of exposed active sites and complicates Ru recovery. Here, we present a monometallic RuO2 (d-RuO2) with lattice hydroxyl in the periodic structure as a high-performance OER electrocatalyst. The obtained d-RuO2 catalyst exhibits a low overpotential of 150 mV and long-term operational stability of 500 h at 10 mA cm-2, outperforming many Ru/Ir-based oxides ever reported. A PEMWE device using d-RuO2 sustains operation for 348 h at 200 mA cm-2. In-situ characterization reveals that the incorporation of lattice hydroxyl increases the Ru-Ru distance, which facilitates the turnover of the Ru oxidation state and promotes the formation of stable edge-sharing [RuO6] octahedra during the OER, thereby accelerating the formation of O-O bonds and suppressing the overoxidation of Ru sites. Additionally, the small particle size of the catalyst decreases the three-phase contact line and promotes bubble release. This study will provide insights into the design and optimization of catalysts for various electrochemical reactions.
Keywords: Lattice hydroxyl
Oxygen evolution reaction
Proton exchange membrane water electrocatalysis
Ruthenium oxide
Ru−Ru distance
Publisher: American Chemical Society
Journal: ACS nano 
ISSN: 1936-0851
EISSN: 1936-086X
DOI: 10.1021/acsnano.5c01937
Rights: Copyright © 2025 The Authors. Published by American Chemical Society. This publication is licensed under CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/).
The following publication She, S., Chen, H. C., Chen, C., Zhu, Y., Chen, G., Song, Y., ... & Huang, H. (2025). Regulating Ru–Ru Distance in RuO2 Catalyst by Lattice Hydroxyl for Efficient Water Oxidation. ACS nano, 19(19), 18513-18521 is available at https://doi.org/10.1021/acsnano.5c01937.
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