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Accelerated C-F bond cleavage on sulfur vacancy-contained CoS2/MoS2 electrode featuring rich H
Zhenglin Chen1, Guangzhen Liu1, Yuqi Hong1
1Key Laboratory of Jiangxi Province for Persistent Pollutants Prevention Control and Resource Reuse, Nanchang Hangkong University, Nanchang 330063, Jiangxi Province, China.
Abstract:
Carbon-fluorine (C-F) toxic groups in halogenated contaminants pose long-standing and significant threat to aquatic ecosystems and human health. In tackling the challenge of breaking C-F bond with low energy-consuming technique, this study reveals an enhanced electrochemical dehalogenation (ECHD) process using three-dimensional multilayer CoS2/MoS2 heterojunction cathode which possesses sulfur vacancies (Sv)-assisted modulation. It is found out that, when CoS2 and MoS2 grow together, Sv sites are constructed between MoS2 and CoS2 layers, fundamentally reversing the planar electronic inertness of MoS2 and enhancing the coupling between H+ and reactive electrons, thereby generating substantial atomic hydrogen (H*). Meanwhile, the electronic interactions between Sv and neighboring S (Sn) enhance the adsorption of H* at Sn sites and suppressing the competitive H2 evolution, constructing an H*-rich network. Accordingly, H* induces the substantial dechlorination of florfenicol (FLO), and the released free chloride ions indirectly optimized the C-F bond cleavage energy barrier, facilitating the cleavage of C-F bonds. With Sv-assisted modulated ECHD system and taking florfenicol as a representative, we accomplish near-total C-F bond removal with 100 % selectivity at -1.4 VAg/AgCl, marking a leap beyond current capabilities in efficiency, selectivity, environmental sustainability, and stability over 240-minute waste-free cycle.
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