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Nanohybrid electrolytes for high-energy lithium-ion batteries: recent advances and future challenges

机译:高能量锂离子电池的纳米冬小电解质:最近的进步和未来挑战

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摘要

Next-generation lithium-ion batteries (LIBs) will have a two to three times increase in energy density compared to today's technology due to the adoption of new cathode and anode materials. In addition, their safety properties need to be further enhanced to allow large-scale applications. In this context, new electrolytes with high lithium-ion (Li+) conductivity as well as good stability should be developed. Recently, there has been a growing interest in developing nanohybrid electrolytes. By combining organic (polymers, ionic liquids) and/or inorganic (Li+-conductive ceramics and glasses) functional constituents, a broad range of nanohybrid electrolytes with interesting chemical, mechanical and electrochemical properties have been designed and evaluated in different cell chemistry. This article aims to conduct a comprehensive review on the development of nanohybrid electrolytes in recent years (2012 to present). Specifically, we summarize and analyze the recent progress of gel-, inorganic- and polymer-based nanohybrid electrolytes with enhanced physicochemical properties and specified functionalities for their application in LIBs. Challenges and perspectives for future development of better nanohybrid LIB electrolytes are also discussed.
机译:由于采用了新的阴极和阳极材料,下一代锂离子电池(LIBS)的能量密度增加了两到三倍。此外,需要进一步提高其安全性能,以允许大规模应用。在这种情况下,应开发具有高锂离子(Li +)电导率的新电解质以及良好的稳定性。最近,对开发纳米冬小麦电解质的兴趣日益增长。通过组合有机(聚合物,离子液体)和/或无机(Li + - 导电陶瓷和玻璃)的功能成分,在不同的细胞化学中设计和评估了具有有趣化学,机械和电化学性能的宽范围的纳米冬小电解质。本文旨在对近年来纳米冬小电解质的开发进行全面审查(2012年至今)。具体地,我们总结和分析了凝胶,无机 - 和聚合物基纳米嗜型电解质的近期进展,其具有增强的物理化学性质和其在Libs中的应用程序的特定功能。还讨论了未来发展更好的纳米嗜肾上腺电解质的挑战和观点。

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