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Hydrated Deep Eutectic Electrolytes for High-Performance Zn-Ion Batteries Capable of Low-Temperature Operation

机译:用于低温运行的高性能锌离子电池的水合深共晶电解质

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摘要

Aqueous Zn-ion batteries (ZIBs) are a promising energy storage technology due to their intrinsic safety, eco-friendliness, and cost-effectiveness. However, aqueous electrolytes generally induce parasitic interfacial reactions (e.g., dendrite growth and passivation) that degrade the Zn metal anode, shortening ZIBs lifespan. This study develops a novel hydrated deep eutectic electrolyte (DEE), containing sulfolane (SL) and Zn(ClO4)(2)center dot 6H(2)O, to prevent water-induced deterioration. The strong coordination between SL and Zn2+ triggers the deep eutectic effect, extending the operating temperature window of the DEE. The unique water-in-DEE structure boosts ionic diffusion, promotes Zn2+ deposition, and reduces water reactivity, as revealed by in-depth simulations and experiments. The developed DEE suppresses dendrite formation, allowing the ZnDEEZn symmetrical cells to cycle over thousands of hours without short-circuiting. With a polyaniline (PANI) cathode, ZnDEEPANI cells can cycle 2500 times with a capacity of 72 mAh g(-1) at 3 A g(-1) at room temperature and 500 times with 73 mAh g(-1) at 0.3 A g(-1) at -30 degrees C. The newly developed DEE significantly is a step forward for inexpensive, stable, and high-performance ZIBs.
机译:水系锌离子电池(ZIBs)因其本质安全性、环保性和成本效益而成为一种很有前途的储能技术。然而,水性电解质通常会诱发寄生界面反应(例如枝晶生长和钝化),从而降解锌金属阳极,从而缩短 ZIB 的使用寿命。本研究开发了一种含有环丁砜(SL)和Zn(ClO4)(2)中心点6H(2)O的水合深共晶电解质(DEE),以防止水引起的劣化。SL与Zn2+之间的强配位触发了深度共晶效应,延长了DEE的工作温度窗口。正如深入的模拟和实验所揭示的那样,独特的水包水结构可促进离子扩散,促进Zn2+沉积,并降低水反应性。开发的DEE抑制枝晶的形成,使Zn|DEE|Zn对称电池可循环数千小时而不会短路。使用聚苯胺 (PANI) 阴极时,Zn|DEE|PANI电池在室温下可以循环2500次,在3 A g(-1)下容量为72 mAh g(-1),在-30°C下循环500次,容量为73 mAh g(-1),容量为0.3 A g(-1)。新开发的DEE是廉价、稳定和高性能ZIB的重大进步。

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