Functionalized metal-organic framework modified membranes with ultralong cyclability and superior capacity for zinc/bromine flowless batteries
Aqueous zinc/bromine flowless batteries (ZBFLBs) are gaining attention as a next-generation energy storage system with the advantages of a cost-effective active material, simple system configuration, high output, high energy density, and high safety. However, the unrestricted crossovers of Br 2 and...
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Veröffentlicht in: | Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2024-06, Vol.12 (23), p.1397-13979 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Aqueous zinc/bromine flowless batteries (ZBFLBs) are gaining attention as a next-generation energy storage system with the advantages of a cost-effective active material, simple system configuration, high output, high energy density, and high safety. However, the unrestricted crossovers of Br
2
and polybromide (Br
n
−
) seriously cause self-discharge and Zn electrode corrosion, limiting the coulombic efficiency (CE) and battery life. An amidated and sulfonated-functional UiO-66 (U-AS) composite membrane is developed to enhance the ZBFLB performance. U-AS contributes to the balanced ion transport of Zn
2+
and Br
−
ions, while the U-AS internal cage and amine group capture Br
2
/Br
n
−
, suppressing the crossover. The proper hydrophilic domains in the U-AS membrane form well-connected water channels, facilitating ion transport. Thus, the modified membrane induces homogenous Zn deposition and greatly extends the life span of the ZBFLB over 2600 h at 9.7 mA h and 10 mA cm
-2
with an excellent CE of 98%. At a higher depth of charge (DOC) of 96.5 mA h, it exhibits CE of 93.6% from complete suppression of Br
2
/Br
n
−
crossover. Furthermore, we demonstrate the stable operation of a practical ZBFLB even at a high DOC of 40% for 1200 h with 79% CE. This work provides promising strategies for membrane design toward high-performance ZBFLBs.
A functionalized metal-organic framework for a Zn/Br
2
battery is prepared and contributes to superior high capacity by self-discharge suppression and long cyclability due to uniform Zn deposition even under high depth of charge conditions. |
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ISSN: | 2050-7488 2050-7496 |
DOI: | 10.1039/d4ta01005a |