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Research Article | Open Access

Harnessing the Li+–F electronic seesaw effect in NiFe-layered double hydroxides for balanced oxygen and hydrogen evolution

Rongwei Xu§Danhong Li§Shuangshang TangGuolong QiuHuijuan Zhang( )Yu Wang ( )
The School of Chemistry and Chemical Engineering, State Key Laboratory of Power Transmission Equipment and System Security, Chongqing University, Chongqing 400044, China

§ Rongwei Xu and Danhong Li contributed equally to this work.

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Abstract

NiFe layered double hydroxides (NiFe-LDHs) show considerable promise as electrocatalysts for overall water splitting; however, their performance is often limited by sluggish reaction kinetics. In this study, we demonstrate that Li+ and F dopants impose opposite electronic effects on NiFe-LDH: Li+ donates electron density to the metal center and expands the interlayer spacing, thereby facilitating the rapid formation of the active NiOOH phase; conversely, the highly electronegative F stabilizes high-valent Ni species and promotes reactions involving protons. This antagonistic interplay constitutes a Li+–F electronic seesaw effect; thus, the incorporation of both ions into NiFe-LDH on nickel foam (Li,F-NiFe-LDH/NF) optimizes the electronic structure, resulting in superior oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) activities with overpotentials of 201 and 104 mV, respectively. In situ Raman spectroscopy confirms the earlier onset of reaction and greater extent of NiOOH formation. This dual-ion doping strategy provides a general route to harnessing electronic seesaw effects for the design of high-performance bifunctional electrocatalysts.

Graphical Abstract

A facile hydrothermal strategy enables the direct growth of Li+/F co-doped NiFe-layered double hydroxides (LDHs) on nickel foam, producing a bifunctional catalyst with outstanding oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) activities. The synergistic Li+–F electronic “seesaw effect” optimizes the local coordination environment, facilitating rapid NiOOH formation and stabilizing high-valent Ni species. In situ Raman spectroscopy provides direct mechanistic evidence, highlighting a general approach to electronic structure engineering.

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Nano Research
Article number: 94908353

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Cite this article:
Xu R, Li D, Tang S, et al. Harnessing the Li+–F electronic seesaw effect in NiFe-layered double hydroxides for balanced oxygen and hydrogen evolution. Nano Research, 2026, 19(8): 94908353. https://doi.org/10.26599/NR.2026.94908353
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Received: 04 November 2025
Revised: 08 December 2025
Accepted: 16 December 2025
Published: 22 June 2026
© The Author(s) 2026. Published by Tsinghua University Press.

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, https://creativecommons.org/licenses/by/4.0/).