A quaternized anthraquinone derivative for pH-neutral aqueous organic redox flow batteries

A pH-neutral aqueous organic redox flow battery (AORFB) is one of the most attractive redox flow battery systems due to its non-corrosivity and low-cost as well as a wider electrochemical stability potential window than the acidic and alkaline electrolytes. Herein, by incorporating two quaternary am...

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Veröffentlicht in:New journal of chemistry 2023-06, Vol.47 (23), p.11216-11221
Hauptverfasser: Xu, Lei, Wang, Qianwei, Guo, Dengfeng, Xu, Juan, Cao, Jianyu
Format: Artikel
Sprache:eng
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Zusammenfassung:A pH-neutral aqueous organic redox flow battery (AORFB) is one of the most attractive redox flow battery systems due to its non-corrosivity and low-cost as well as a wider electrochemical stability potential window than the acidic and alkaline electrolytes. Herein, by incorporating two quaternary ammonium groups into an anthraquinone nucleus, a water-soluble redox-active molecule, 2,2′-((9,10-dioxo-9,10-dihydroanthracene-1,4-diyl)bis(azanediyl))bis( N , N , N -trimethylethan-1-aminium)dichloride (BDEAQCl 2 ), was achieved that could serve as an anolyte material in pH-neutral AORFBs. The BDEAQCl 2 displays a highly negative redox-potential of −0.554 V ( vs. SHE) in pH-neutral aqueous electrolytes, rapid electrochemical kinetics and high aqueous-solubility (∼1.2 M in H 2 O) as well as low permeability. The pH-neutral AORFB with BDEAQCl 2 as the anolyte and potassium ferrocyanide as the catholyte yields open-circuit voltage approaching ∼1.04 V. Long-term charge-discharge cycling measurements were conducted to determine the efficiency, capacity, and chemical stability of BDEAQCl 2 . Post-analysis indicates that BDEAQCl 2 undergoes a hydrolytic side reaction during charge-discharge cycling, which is mainly responsible for capacity degradation. A water-soluble redox-active molecule, 2,2′-((9,10-dioxo-9,10-dihydroanthracene-1,4-diyl)bis(azanediyl))bis( N , N , N -trimethylethan-1-aminium)dichloride (BDEAQCl 2 ), was achieved that can serve as an anolyte material for pH-neutral aqueous organic RFBs.
ISSN:1144-0546
1369-9261
DOI:10.1039/d3nj00784g