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Fe, Ni-codoped W18O49grown on nickel foam as a bifunctional electrocatalyst for boosted water splitting

journal contribution
posted on 2024-11-17, 13:18 authored by Guojuan Hai, Jianfeng Huang, Liyun Cao, Koji Kajiyoshi, Long Wang, Liangliang Feng, Yijun Liu, Limin Pan
Designing cost-effective bifunctional catalysts with high-performance and durability is of great significance for renewable energy systems. Herein, typical Fe, Ni-codoped W18O49/NF was prepared via a simple solvothermal method. The incorporation of Fe ions enhanced the electronic interaction and enlarged the electrochemically active surface area. The increased W4+ leads to a high proportion of unsaturated W=O bonds, thus enhancing the adsorption capacity of water. The valence configuration of nickel (Ni) sites in such dual-cation doping is well adjusted, realizing a high proportion of trivalent Ni ions (Ni3+). Due to the orbital interactions, the Fe3+/Ni3+ ions and OER reaction intermediates exhibit strong orbital overlap. The positions of the valence band and conduction band are well modulated. As a result, the Fe, Ni-codoped W18O49/NF shows improved electrocatalytic activity, and achieves a low decomposition voltage of 1.58 V at 10 mA cm-2 and retains long-time stability.

Funding

National Natural Science Foundation of China (2020GHJD-04)

History

Journal title

Dalton Transactions

Volume

50

Issue

33

Pagination

11604-11609

Language

English

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