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揭示用于高效电催化碱性海水分解的Ni/Co(OH)-Ru异质界面的双活性位点

Unveiling the Dual Active Sites of Ni/Co(OH)-Ru Heterointerface for Robust Electrocatalytic Alkaline Seawater Splitting.

作者信息

Yu Xinhui, Jiang Wei, Wu Yuanyuan, Chu Xianyu, Liu Bo, Zhou Shi, Liu Chunbo, Che Guangbo, Liu Guojie

机构信息

Key Laboratory of Preparation and Application of Environmental Friendly Materials (Jilin Normal University), Ministry of Education, Changchun, 130103, P. R. China.

Jilin Joint Technology Innovation Laboratory of Developing and Utilizing Materials of Reducing Pollution and Carbon Emissions, College of Engineering, Jilin Normal University, Siping, 136000, P. R. China.

出版信息

Small. 2025 Mar;21(9):e2410086. doi: 10.1002/smll.202410086. Epub 2025 Jan 15.

Abstract

Constructing bifunctional electrocatalysts through the synergistic effect of diverse metal sites is crucial for achieving high-efficiency and steady overall water splitting. Herein, a "dual-HER/OER-sites-in-one" strategy is proposed to regulate dominant active sites, wherein Ni/Co(OH)-Ru heterogeneous catalysts formed on nickel foam (NF) demonstrate remarkable catalytic activity for oxygen evolution reaction (OER) as well as hydrogen evolution reaction (HER). Meanwhile, the potentials@10 mA cm of Ni/Co(OH)-Ru@NF for overall alkaline water and seawater splitting are only 1.36 and 1.41 V, respectively, surpassing those of commercial RuO@NF and Pt/C@NF. The Ru site is identified as the primary active site for HER by density functional theory (DFT) calculations, while the Co(OH) site displays the minimal rate-determining step energy barrier (RDS) and functions as the main active site for OER. This study offers novel perspectives on the rational utilization of diverse metal species' catalytic capabilities for developing dual active sites multifunctional electrocatalysts.

摘要

通过不同金属位点的协同效应构建双功能电催化剂对于实现高效稳定的全水分解至关重要。在此,提出了一种“双HER/OER位点一体化”策略来调控主要活性位点,其中在泡沫镍(NF)上形成的Ni/Co(OH)-Ru异质催化剂对析氧反应(OER)和析氢反应(HER)均表现出显著的催化活性。同时,Ni/Co(OH)-Ru@NF用于全碱性水分解和海水分解时在10 mA cm下的过电位分别仅为1.36 V和1.41 V,超过了商业RuO@NF和Pt/C@NF。通过密度泛函理论(DFT)计算确定Ru位点是HER的主要活性位点,而Co(OH)位点显示出最小的速率决定步骤能垒(RDS),并作为OER的主要活性位点。本研究为合理利用不同金属物种的催化能力以开发双活性位点多功能电催化剂提供了新的视角。

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