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混合水相/非水双盐基水基电解质助力安全双离子电池。

Hybrid Aqueous/Nonaqueous Water-in-Bisalt Electrolyte Enables Safe Dual Ion Batteries.

作者信息

Zhu Jiaojiao, Xu Yongtai, Fu Yujun, Xiao Dewei, Li Yali, Liu Lingyang, Wang Yue, Zhang Qingnuan, Li Junshuai, Yan Xingbin

机构信息

Laboratory of Clean Energy Chemistry and Materials, State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese of Academy of Sciences, Lanzhou, 730000, P. R. China.

Key Laboratory of Special Function Materials & Structure Design of the Ministry of Education, and School of Physical Science & Technology, Lanzhou University, 222 South Tianshui Road, Lanzhou, 730000, P. R. China.

出版信息

Small. 2020 Apr;16(17):e1905838. doi: 10.1002/smll.201905838. Epub 2020 Mar 29.

Abstract

Dual ion batteries (DIBs) have recently attracted ever-increasing attention owing to the potential advantages of low material cost and good environmental friendliness. However, the potential safety hazards, cost, and environmental concerns mainly resulted from the commonly used nonaqueous organic solvents severely hinder the practical application of DIBs. Herein, a hybrid aqueous/nonaqueous water-in-bisalt electrolyte with both broad electrochemical stability window and excellent safety performance is developed. The lithium-based DIB assembled using KS6 graphite and niobium pentoxide as the active materials in the cathode and anode exhibits good comprehensive performance including capacity, cycling stability, rate performance, and medium discharge voltage. Initial capacities of ≈47.6 and 29.6 mAh g retention after 300 cycles can be delivered with a medium discharge voltage of around 2.2 V in the voltage window of 0-3.2 V at the current density of 200 mA g . Good rate performance for the battery can be indicated by 29.7 mAh g discharge capacity retention at 400 mA g . It is noteworthy that the coulombic efficiency of the battery can reach as high as 93.9%, which is comparable to that of the corresponding DIBs using nonaqueous organic electrolytes.

摘要

双离子电池(DIBs)由于具有材料成本低和环境友好性好等潜在优势,近年来受到了越来越多的关注。然而,常用的非水有机溶剂所带来的潜在安全隐患、成本和环境问题严重阻碍了DIBs的实际应用。在此,开发了一种具有宽电化学稳定窗口和优异安全性能的混合水/非水双盐水电解质。以KS6石墨和五氧化二铌作为正极和负极的活性材料组装的锂基DIB表现出良好的综合性能,包括容量、循环稳定性、倍率性能和中等放电电压。在0-3.2V的电压窗口中,在200mA g的电流密度下,初始容量约为47.6mAh g,300次循环后容量保持率为29.6mAh g,中等放电电压约为2.2V。在400mA g时,电池的放电容量保持率为29.7mAh g,表明电池具有良好的倍率性能。值得注意的是,该电池的库仑效率高达93.9%,与使用非水有机电解质的相应DIBs相当。

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