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Excellent Effect of Betaine in Dilute Electrolytes and Application to High Performance Aqueous Li-Ion Batteries

机译:Excellent Effect of Betaine in Dilute Electrolytes and Application to High Performance Aqueous Li-Ion Batteries

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摘要

The energy density and operating voltage of aqueous batteries are limited by the narrow electrochemical stability window and side reactions of traditional aqueous electrolytes. Considering that the optimization of electrolyte composition can effectively improve the electrochemical performance of aqueous batteries, and it has the advantages of simple and easy large-scale preparation, betaine with rich polar groups and zwitterions is added to the electrolyte as a functional material to reduce the binding degree of water molecules and adsorbed in the electrolyte-electrode interface to prevent the contact of water molecules with the interface. A wide electrolyte operating window (2.91 V) and low salt concentration (2 M) were achieved in the betaine aqueous electrolyte. The interactions between water molecules, lithium salts and betaine in the electrolyte were explored by ATR-FITR, NMR and Raman spectroscopy. Aqueous TiO2/LiFePO4 full cells with stable specific energies 69Whkg~(-1) were demonstrated over 500 cycles on such low non-fluorinated lithium salt concentration electrolyte.
机译:的能量密度和工作电压水由狭窄有限的电池电化学稳定窗口,一面传统水电解质的反应。考虑到优化电解液成分可以有效地改善水电池的电化学性能,它有简单和容易的优点大规模制备、甜菜碱与丰富的极地组和既被添加到电解质作为功能材料以减少水分子的结合程度吸附在electrolyte-electrode接口防止水分子的接触接口。窗口(2.91 V)和低盐浓度(2米)了甜菜碱的水溶液电解液。水分子之间的相互作用,锂盐和甜菜碱的电解质探索ATR-FITR,核磁共振和拉曼光谱。水二氧化钛/完整的磷酸铁锂电池与稳定特定的能量69 whkg ~(1)被证明在这样低non-fluorinated超过500周期锂盐浓度电解质。

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  • 来源
    《Chemistry Select》 |2022年第38期|共7页
  • 作者单位

    Shanghai Key Laboratory of Green Chemistry and Chemical Process East China Normal University Shanghai 200241, China;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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