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Self‐Regulative Nanogelator Solid Electrolyte: A New Option to Improve the Safety of Lithium Battery

机译:自调控纳米胶凝剂固体电解质:提高锂电池安全性的新选择

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摘要

The lack of suitable nonflammable electrolytes has delayed battery application in electric vehicles. A new approach to improve the safety performance for lithium battery is proposed here. This technology is based on a nanogelator‐based solid electrolyte made of porous oxides and an ionic liquid. The electrolyte is fabricated using an in situ method and the porous oxides serve as a nonflammable “nanogelator” that spontaneously immobilizes the ionic liquid. The electrolyte exhibits a high liquid‐like apparent ionic conductivity of 2.93 × 10−3 S cm−1 at room temperature. The results show that the nanogelator, which possess self‐regulating ability, is able to immobilize imidazolium‐, pyrrolidinium‐, or piperidinium‐based ionic liquids, simply by adjusting the ion transport channels. Our prototype batteries made of Ti‐nanogeltor solid electrolyte outperform conventional lithium batteries made using ionic liquid and commercial organic liquid electrolytes.
机译:缺乏合适的不可燃电解质已经延迟了电动车辆中电池的应用。本文提出了一种提高锂电池安全性能的新方法。该技术基于由多孔氧化物和离子液体制成的基于纳米胶凝剂的固体电解质。使用原位方法制造电解质,并且多孔氧化物充当自燃性固定离子液体的不可燃“纳米胶凝剂”。该电解质在室温下具有2.93×10 -3 S cm -1 的高液体状表观离子电导率。结果表明,具有自我调节能力的纳米胶凝剂只需调节离子传输通道即可固定咪唑鎓,吡咯烷鎓或哌啶鎓离子液体。我们的由Ti-nanogeltor固体电解质制成的原型电池优于使用离子液体和商用有机液体电解质制成的传统锂电池。

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