Plasma‐Induced Surface Fluorination of Metal Foils as Reliable Reference Electrodes for Fluoride‐Ion Batteries

ABSTRACT Fluoride‐ion batteries (FIBs) are promising for next‐generation energy storage, but their fundamental studies are limited by the rareness of stable and reproducible reference electrodes, unlike the case of lithium, sodium, and zinc chemistry, where their metal anodes can be directly leveraged as the reference electrode. Here, we report a binder‐free strategy to fabricate integrated Pb/PbF 2 electrodes via CF 4 plasma‐assisted fluorination of metallic Pb foils. By tuning the plasma power, temperature, and treatment time, the phase composition, morphology, and fluorination degree of resultant electrodes can be effectively controlled. The evolution mechanism between α‐phase and β‐phase lead(II) fluorides is established, governed by the plasma energy input and surface thermodynamics. Our proposed plasma fluorination strategy is also demonstrated to be versatile in obtaining Sn/SnF 2 electrodes with good structural integrity and tunable fluorination level. This approach avoids binder‐related issues in conventional slurry‐casting electrodes and provides a reliable pathway for developing reliable reference electrodes in FIB systems.

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Publication Details

Journal
Small
Published
2026-08-25
DOI
https://doi.org/10.1002/smll.75411
Primary Topic
Inorganic Fluorides and Related Compounds
Type
article
Field-Weighted Citation Impact
0.00

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article

Plasma‐Induced Surface Fluorination of Metal Foils as Reliable Reference Electrodes for Fluoride‐Ion Batteries

Jiamin Fei, Peichao Zou, Yongqi Zhang, Honghao Zhu et al.
Small
Inorganic Fluorides and Related Compounds
article

Plasma‐Induced Surface Fluorination of Metal Foils as Reliable Reference Electrodes for Fluoride‐Ion Batteries

Jiamin Fei, Peichao Zou, Yongqi Zhang, Honghao Zhu, Xinhui Xia, Kai Yu, Xinyan Guo, Weiwei Hou, Wenqi Xiao
article en

Abstract

ABSTRACT Fluoride‐ion batteries (FIBs) are promising for next‐generation energy storage, but their fundamental studies are limited by the rareness of stable and reproducible reference electrodes, unlike the case of lithium, sodium, and zinc chemistry, where their metal anodes can be directly leveraged as the reference electrode. Here, we report a binder‐free strategy to fabricate integrated Pb/PbF 2 electrodes via CF 4 plasma‐assisted fluorination of metallic Pb foils. By tuning the plasma power, temperature, and treatment time, the phase composition, morphology, and fluorination degree of resultant electrodes can be effectively controlled. The evolution mechanism between α‐phase and β‐phase lead(II) fluorides is established, governed by the plasma energy input and surface thermodynamics. Our proposed plasma fluorination strategy is also demonstrated to be versatile in obtaining Sn/SnF 2 electrodes with good structural integrity and tunable fluorination level. This approach avoids binder‐related issues in conventional slurry‐casting electrodes and provides a reliable pathway for developing reliable reference electrodes in FIB systems.

Small
University of Electronic Science and Technology of China (CN), Civil Aviation University of China (CN), Soochow University (CN), Zhejiang University of Technology (CN)
National Natural Science Foundation of China, Government of Jiangsu Province, Natural Science Foundation of Zhejiang Province
Affordable and clean energy
Openalex Percentile: Top 23%
Inorganic Fluorides and Related Compounds
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