Wu Zhen-Yu, Chen Feng-Yang, Li Boyang, Yu Shen-Wei, Finfrock Y Zou, Meira Debora Motta, Yan Qiang-Qiang, Zhu Peng, Chen Ming-Xi, Song Tian-Wei, Yin Zhouyang, Liang Hai-Wei, Zhang Sen, Wang Guofeng, Wang Haotian
Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX, USA.
Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, PA, USA.
Nat Mater. 2023 Jan;22(1):100-108. doi: 10.1038/s41563-022-01380-5. Epub 2022 Oct 20.
Iridium-based electrocatalysts remain the only practical anode catalysts for proton exchange membrane (PEM) water electrolysis, due to their excellent stability under acidic oxygen evolution reaction (OER), but are greatly limited by their high cost and low reserves. Here, we report a nickel-stabilized, ruthenium dioxide (Ni-RuO) catalyst, a promising alternative to iridium, with high activity and durability in acidic OER for PEM water electrolysis. While pristine RuO showed poor acidic OER stability and degraded within a short period of continuous operation, the incorporation of Ni greatly stabilized the RuO lattice and extended its durability by more than one order of magnitude. When applied to the anode of a PEM water electrolyser, our Ni-RuO catalyst demonstrated >1,000 h stability under a water-splitting current of 200 mA cm, suggesting potential for practical applications. Density functional theory studies, coupled with operando differential electrochemical mass spectroscopy analysis, confirmed the adsorbate-evolving mechanism on Ni-RuO, as well as the critical role of Ni dopants in stabilization of surface Ru and subsurface oxygen for improved OER durability.
基于铱的电催化剂仍然是质子交换膜(PEM)水电解中唯一实用的阳极催化剂,因为它们在酸性析氧反应(OER)下具有出色的稳定性,但受到高成本和低储量的极大限制。在此,我们报告了一种镍稳定的二氧化钌(Ni-RuO)催化剂,它是铱的一种有前途的替代品,在用于PEM水电解的酸性OER中具有高活性和耐久性。虽然原始RuO在酸性OER中表现出较差的稳定性,并且在短时间连续运行内就会降解,但镍的掺入极大地稳定了RuO晶格,并将其耐久性提高了一个多数量级。当应用于PEM水电解槽的阳极时,我们的Ni-RuO催化剂在200 mA cm的析氢电流下表现出>1000 h的稳定性,表明其具有实际应用潜力。密度泛函理论研究与原位差分电化学质谱分析相结合,证实了Ni-RuO上的吸附质演化机制,以及镍掺杂剂在稳定表面Ru和次表面氧以提高OER耐久性方面的关键作用。