Conversion-intercalation competing behaviour of halogen storage on graphite electrode from fluid ZnCl 2 /ZnBr 2 hydrates

Zinc-based aqueous dual-ion batteries (ADIBs) with halogen-graphite intercalation compound positive electrodes are among the most competitive candidates for next-generation electrochemical energy storage systems. However, most of the electrolytes employed have been gel-like electrolytes; hence, a fu...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2024-01, Vol.60 (8), p.1027-1030
Hauptverfasser: Xu, Shiguan, Shen, Lin, Wang, Xiaoxu, Gu, Shaonan, Sun, Wei, Huang, Yuhao
Format: Artikel
Sprache:eng
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Zusammenfassung:Zinc-based aqueous dual-ion batteries (ADIBs) with halogen-graphite intercalation compound positive electrodes are among the most competitive candidates for next-generation electrochemical energy storage systems. However, most of the electrolytes employed have been gel-like electrolytes; hence, a fundamental understanding of the halogen storage process using fluid hydrates will be essential for constructing efficient Zn-based ADIBs. Herein, the halogen storage mechanism on a graphite electrode from fluid ZnCl /ZnBr hydrates is studied by experimental and computational methods. The results indicate that the halogen storage mechanism is a competition between conversion and intercalation. Moreover, the macroscopic electrode reaction is determined by both the ion-pair solvation state at the graphite-electrolyte interface and the subsequent reactant supply is influenced by the electrode reaction rate.
ISSN:1359-7345
1364-548X
DOI:10.1039/D3CC04755E