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Zinc‐Coordinated Imidazole‐Based Ionic Liquid As Liquid Salt for All‐Temperature Aqueous Zinc‐Ion Batteries

Mingyang Zhong, Yang Wang,Yihua Xie,Shouyi Yuan,Kai Ding, Elijah J. Begin,Yingjie Zhang,Junwei Lucas Bao,Yonggang Wang

Advanced functional materials(2024)

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摘要
Owing to the intrinsically high safety, low cost, natural abundance, and high energy density of Zn metal, aqueous Zn ion batteries (AZIBs) have become a promising candidate for large-scale energy conversion and storage. However, the practical application of AZIBs is hampered by the severe Zn dendrites growth and the poor low-temperature performance due to the elevated freezing point of aqueous electrolyte. Herein, the study proposes a new kind of room-temperature liquid Zn salt, which is called Zn coordinated ionic liquid (i.e., (EMIM)5Zn(OTF)7), for all-temperature AZIBs. The aqueous electrolyte containing 0.261 mol kg-1 (EMIM)5Zn(OTF)7 in Ethylene Glycol (EG) / H2O (6:4) exhibits ultralow freezing point below -100 degrees C. The liquid Zn salt and EG molecules not only modulate the solvation structure of Zn2+ ion, reducing the coordinated H2O in the first solvation sheath, but also suppresses the parasitic side reaction. As a proof of concept, Zn || Zn symmetric cells and Zn || PANI full cells with the designed electrolyte achieve improved cycling stability and can operate under wide temperature (from -40 to 60 degrees C). Even with high Zn utilization ratio of 40%, long cycle life over 70 times with capacity retention of 80% is achieved. The study reports a zinc-coordinated ionic liquid as zinc salt for aqueous Zn-ion batteries. The electrolyte, consisting of 0.261 mol kg-1 (EMIM)5Zn(OTF)7 in EG/H2O (6:4), shows an ultralow freezing point (<- 100 degrees C). This unique electrolyte effectively suppresses Zn dendrites, leading to improved Zn || PANI full-cell performance at temperatures ranging from -40 to 60 degrees C. image
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关键词
wide operation temperature,Zn || PANI full cells,Zn coordinated ionic liquid,Zn dendrites
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