High-Performance Aqueous Zinc-Ion Batteries Realized by MOF Materials
Высокопроизводительные водные цинк-ионные аккумуляторы на основе металлоорганических каркасных материалов
2020-07-16
SCID: 54.1/yx78sfgs
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Mn(BTC) MOF cathodeZIF-8-coated zinc anodeaqueous zinc-ion batteriesmetal–organic frameworkszinc stripping/plating
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Abstract (AI)
Abstract Rechargeable aqueous zinc-ion batteries (ZIBs) have been gaining increasing interest for large-scale energy storage applications due to their high safety, good rate capability, and low cost. However, the further development of ZIBs is impeded by two main challenges: Currently reported cathode materials usually suffer from rapid capacity fading or high toxicity, and meanwhile, unstable zinc stripping/plating on Zn anode seriously shortens the cycling life of ZIBs. In this paper, metal–organic framework (MOF) materials are proposed to simultaneously address these issues and realize high-performance ZIBs with Mn(BTC) MOF cathodes and ZIF-8-coated Zn (ZIF-8@Zn) anodes. Various MOF materials were synthesized, and Mn(BTC) MOF was found to exhibit the best Zn 2+ -storage ability with a capacity of 112 mAh g −1 . Zn 2+ storage mechanism of the Mn(BTC) was carefully studied. Besides, ZIF-8@Zn anodes were prepared by coating ZIF-8 MOF material on Zn foils. Unique porous structure of the ZIF-8 coating guided uniform Zn stripping/plating on the surface of Zn anodes. As a result, the ZIF-8@Zn anodes exhibited stable Zn stripping/plating behaviors, with 8 times longer cycle life than bare Zn foils. Based on the above, high-performance aqueous ZIBs were constructed using the Mn(BTC) cathodes and the ZIF-8@Zn anodes, which displayed an excellent long-cycling stability without obvious capacity fading after 900 charge/discharge cycles. This work provides a new opportunity for high-performance energy storage system.
Key Findings
1
A porous ZIF-8 coating guided uniform zinc stripping/plating and gave ZIF-8@Zn anodes an eight-times longer cycle life than bare zinc foils.
2
Among the synthesized MOFs, Mn(BTC) exhibited the best Zn2+-storage performance, delivering a capacity of 112 mAh g−1.
3
Aqueous zinc-ion batteries combining Mn(BTC) cathodes with ZIF-8@Zn anodes operated for 900 charge/discharge cycles without obvious capacity fading.
4
MOF materials were used to address both cathode degradation or toxicity and unstable zinc stripping/plating in aqueous zinc-ion batteries.
5
The study establishes a combined MOF cathode–anode strategy for improving the cycling stability and performance of aqueous zinc-ion batteries.
Research Object
MOF-based aqueous zinc-ion batteries with Mn(BTC) MOF cathodes and ZIF-8-coated Zn anodes
Research Subject
Zn2+ storage in Mn(BTC) cathodes and the Zn stripping/plating stability and long-cycle performance enabled by ZIF-8@Zn anodes
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2020-07-16
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