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Synergistic effect of amine/Ni-modification and electrochemical activation on prussian blue/carbon paper electrodes for robust cesium removal

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Title
Synergistic effect of amine/Ni-modification and electrochemical activation on prussian blue/carbon paper electrodes for robust cesium removal
Issued Date
2026-08
Citation
SEPARATION AND PURIFICATION TECHNOLOGY, v.398
Type
Article
Author Keywords
Prussian blueAmine-functionalizationNi platingElectrochemical activationCesium
Keywords
BLUE ANALOGWASTE-WATERPERFORMANCEADSORPTIONDEPOSITION
ISSN
1383-5866
Abstract

This study presents the rational design and systematic evaluation of Prussian Blue (PB)-based carbon paper electrodes for efficient and reversible cesium ion capture. By sequentially integrating surface amine functionalization, a conductive nickel interlayer, and electrodeposited Prussian Blue, the resulting PB/Ni/ACP electrode exhibits enhanced adhesion, improved electrical conductivity, and stabilized redox activity. Notably, CV activation in CsCl induces a robust lattice rearrangement driven by the insertion and partial fixation of Cs+ ions. This fixation stabilizes the Prussian Blue framework, maintaining expanded ion-transport pathways and preventing structural collapse during subsequent cycling. Consequently, the activated electrode (A-PB/Ni/ACP) achieves a high Cs+ uptake capacity of 284.9 mg g- 1 and an excellent desorption efficiency of 96.9 +/- 4.3%, markedly outperforming its Ni-free and non-activated electrodes. Moreover, it demonstrates highly reversible adsorptiondesorption behavior with negligible capacity loss over repeated cycles. Overall, the synergy of surface chemistry, interfacial engineering, and electrochemical activation provides a robust strategy for developing durable, reusable PB-based electrodes for electrochemical cesium remediation.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/60504
DOI
10.1016/j.seppur.2026.138269
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김순현
Kim, Soonhyun김순현

Division of Energy & Environmental Technology

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