Advanced materials for optics and electronics2026,Vol.36Issue(26) :1-11.DOI:10.1002/adfm.202517978

Iron-Cobalt Co-Doped Nickel Sulfides: A Robust Electrocatalyst for High-Current-Density Seawater Splitting

You-li Sun You-yi Sun Yuxuan Zhang Takeshi Yanagida Johnny C. Ho SenPo Yip
Advanced materials for optics and electronics2026,Vol.36Issue(26) :1-11.DOI:10.1002/adfm.202517978

Iron-Cobalt Co-Doped Nickel Sulfides: A Robust Electrocatalyst for High-Current-Density Seawater Splitting

You-li Sun 1You-yi Sun 2Yuxuan Zhang 3Takeshi Yanagida 4Johnny C. Ho 5SenPo Yip6
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作者信息

  • 1. Interdisciplinary Graduate School of Engineering Sciences Kyushu University Kasuga, Fukuoka 816-8580, Japan
  • 2. Environmental Science and New Energy Technology Research Center Tsinghua Shenzhen International Graduate School Tsinghua University Shenzhen 518055, P. R. China
  • 3. Department of Materials Science and Engineering City University of Hong Kong Hong Kong, SAR 999077, P. R. China
  • 4. Department of Applied Chemistry Graduate School of Engineering The University of Tokyo Tokyo 113-8656, Japan
  • 5. Department of Materials Science and Engineering City University of Hong Kong Hong Kong, SAR 999077, P. R. China||Institute for Materials Chemistry and Engineering Kyushu University Kasuga-koen 6-1, Kasuga, Fukuoka 816-8580, Japan
  • 6. Institute for Materials Chemistry and Engineering Kyushu University Kasuga-koen 6-1, Kasuga, Fukuoka 816-8580, Japan
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Abstract

Nickel-iron-based sulfides have recently attracted considerable attention as promising candidates for water oxidation. However, the high concentration of chloride ions (Cl-) in seawater poses a major challenge, as they readily corrode active sites and significantly compromise long-term durability. Most nickel-iron-based sulfides suffer from poor stability under these conditions, particularly at high current densities, which greatly hinders their practical application in large-scale seawater electrolysis. In this study, an innovative iron and cobalt co-doped nickel sulfide (NiFeCoS) electrode is introduced, produced via a simple fabrication method, which effectively protects the active sites from Cl- attack during alkaline seawater oxidation, even under high current densities. The NiFeCoS catalyst exhibits remarkable stability, maintaining stable performance for over 148 h at a current density of 1 A cm~(-2) in alkaline seawater electrolytes. In an alkaline electrolyte, it achieves low overpotentials of 261, 312, and 342 mV to reach current densities of 100, 500, and 1000 mA cm~(-2). This research presents a novel approach for constructing NiFeCoS electrodes through a straightforward two-step synthesis process, offering a promising and efficient strategy for large-scale hydrogen production via seawater electrolysis.

Key words

Iron and cobalt co-doped nickel sulfides/non-noble metal electrocatalysts/oxygen evolution reaction (OER)/seawater electrolysis

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出版年

2026
Advanced materials for optics and electronics

Advanced materials for optics and electronics

ISSN:1616-301X
参考文献量45
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