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Greener, Safer, and Sustainable Batteries: An Insight into Aqueous Electrolytes for Sodium-Ion Batteries

机译:更环保,更安全和可持续的电池:对钠离子电池的水性电解质的洞察力

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摘要

Rechargeable Na-ion battery technology has successfully emerged as a replacement to the current Li-ion battery technology, especially in large-scale storage applications. Aqueous electrolytes in rechargeable Na-ion batteries have attracted extensive research due to its safety, low cost, and ecofriendliness, making a greener, safer, and sustainable solution for energy storage applications. One of the significant shortcomings for aqueous electrolytes for practical applications is the narrow electrochemical stability window (ESW) of the electrolyte and the chemical/structural stability of the electrodes in this ESW. This review focuses on and emphasizes the research developments using various electrolytic salts to maximize the voltage stability window and to arrest the loss of active materials in aqueous electrolytes.
机译:可充电Na离子电池技术成功地成为当前锂离子电池技术的替代品,特别是在大型存储应用中。 可充电Na离子电池中的水性电解质由于其安全性,低成本和Ecofriendliness而引起了广泛的研究,为能量存储应用制作更绿,更安全和可持续的解决方案。 用于实际应用的水电解质水溶液的重要缺点之一是电解质的窄电化学稳定性窗口(ESW)和该ESW中电极的化学/结构稳定性。 本综述重点介绍,并强调使用各种电解质盐来最大化电压稳定性窗口的研究开发,并在水性电解质中抑制活性材料的损失。

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