A Seamless Metal–Organic Framework Interphase with Boosted Zn2+ Flux and Deposition Kinetics for Long-Living Rechargeable Zn Batteries

Zn metal has received immense interest as a promising anode of rechargeable aqueous batteries for grid-scale energy storage. Nevertheless, the uncontrollable dendrite growth and surface parasitic reactions greatly retard its practical implementation. Herein, we demonstrate a seamless and multifuncti...

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Veröffentlicht in:Nano letters 2023-03, Vol.23 (5), p.1726-1734
Hauptverfasser: Sun, Huanhuan, Huyan, Yu, Li, Na, Lei, Da, Liu, Huanyan, Hua, Wei, Wei, Chunguang, Kang, Feiyu, Wang, Jian-Gan
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Sprache:eng
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Zusammenfassung:Zn metal has received immense interest as a promising anode of rechargeable aqueous batteries for grid-scale energy storage. Nevertheless, the uncontrollable dendrite growth and surface parasitic reactions greatly retard its practical implementation. Herein, we demonstrate a seamless and multifunctional metal–organic framework (MOF) interphase for building corrosion-free and dendrite-free Zn anodes. The on-site coordinated MOF interphase with 3D open framework structure could function as a highly zincophilic mediator and ion sifter that synergistically induces fast and uniform Zn nucleation/deposition. In addition, the surface corrosion and hydrogen evolution are significantly suppressed by the interface shielding of the seamless interphase. An ultrastable Zn plating/stripping is achieved with elevated Coulombic efficiency of 99.2% over 1000 cycles and prolonged lifetime of 1100 h at 10 mA cm–2 with a high cumulative plated capacity of 5.5 Ah cm–2. Moreover, the modified Zn anode assures the MnO2-based full cells with superior rate and cycling performance.
ISSN:1530-6984
1530-6992
DOI:10.1021/acs.nanolett.2c04410