News News
Contact us
  • Customer service number:64321087
  • Commercial service telephone:13918059423
  • Technical service telephone:13918059423
  • Contact person: Mr. Cui 
  • Service email:shxtb@163.com
  • Address: room 107, building 8, no. 100, guilin road, xuhui district, Shanghai

The Synergistic Impact of Lanthanide-Doped Nickel Iron Sulphides (NiFeSs) Synthesized by a Hydrothermal Method

The date of: 2026-09-03
viewed: 3

The Synergistic Impact of Lanthanide-Doped Nickel Iron Sulphides (NiFeSs) Synthesized by a Hydrothermal Method for Effective Water and Urea Electrolysis in Anion Exchange Membranes


来源:ACS Publications

One of the major barriers to sustainable hydrogen production is the development of highly efficient, economically viable electrocatalysts for alkaline and urea water splitting. In this work, we report the synthesis of lanthanum-modified nickel–iron–sulfide (Ni–Fe–S) nanostructures via the hydrothermal method. X-ray diffraction analysis reveals the formation of a multiphase heterostructure consisting of NiFeS2, NiS, FeS2, and lanthanum-based sulfide phases. Surface and compositional analyses confirm the uniform distribution of Ni, Fe, S, and La, while morphological studies demonstrate the formation of highly aggregated nanostructures with abundantly exposed active sites, favorable for catalytic reactions. In three-electrode electrochemical assessments, the optimized (7.5% La-doped nickel iron sulfide) catalyst exhibits superior HER performance, with a low overpotential of 65 mV at 10 mA cm–2 and a reduced Tafel slope of 144 mV dec–1. For the OER, the 7.5% La-doped nickel iron sulfide catalyst delivers a decreased overpotential of 337 mV at 10 mA cm–2 with a favorable Tafel slope of 101 mV dec–1. For the UOR, the 7.5% La-doped nickel iron sulfide catalyst remarkably reduced the overpotential by 177 mV and significantly decreased the Tafel slope to 68 mV dec–1. Furthermore, the NFS3∥SS configuration in an actual two-electrode AEM water and urea electrolyzer had low cell voltages of 1.90 and 1.45 V, respectively, at 10 mA cm–2, both with improved Tafel slopes (0.22 V dec–1). The long-term stability test shows little degradation over 100 h. The results of this study suggest that lanthanum-doped nickel iron sulfide is a viable, Pt-free, low-cost electrocatalyst for the eco-friendly, efficient production of hydrogen in an AEM water- and urea-based electrolytic system.



Hot News / Related to recommend
  • 2026 - 09 - 16
    Click on the number of times: 0
    来源:ACS PublicationsSurface plasmons modulate rare-earth luminescence via local field enhancement and photothermal effects, yet the synergy-competition between these inherently coupled effects remains ...
  • 2026 - 09 - 15
    Click on the number of times: 0
    Phytogenic Self-Conducting Flash Joule Heating Converts Rare-Earth Hyperaccumulator Biomass into Graphene Composites with Minimized Life-Cycle Impacts 来源:ACS PublicationsRare-earth elements (REEs) are...
  • 2026 - 09 - 15
    Click on the number of times: 0
    来源:ACS PublicationsSecuring a sustainable supply of rare earth elements (REEs) requires efficient separation and recovery from secondary streams. Zeolites are attractive, low-impact sorbents; however,...
  • 2026 - 09 - 14
    Click on the number of times: 0
    Detoxification of Ion-Adsorption Rare Earth Elements Low-Level Radioactive Residues via Mild Alkali–Carbonate: Uranium Extraction and Multi-Metal Recovery 来源:ACS PublicationsImpeded by the harsh high-...
  • Copyright ©Copyright 2018 2020 Shanghai rare earth association All Rights Reserved Shanghai ICP NO.2020034223
    the host:Shanghai Association of Rare Earth the guide:Shanghai Development and Application Office of Rare Earth the organizer:Shanghai rare earth industry promotion center
    犀牛云提供云计算服务