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首页> 外文期刊>Advanced energy materials >Hexagonal Boron Nitride-Based Electrolyte Composite for Li-Ion Battery Operation from Room Temperature to 150 °C
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Hexagonal Boron Nitride-Based Electrolyte Composite for Li-Ion Battery Operation from Room Temperature to 150 °C

机译:基于六边形氮化物的电解质复合材料,用于锂离子电池的锂离子电池从室温到150°C

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摘要

Batteries for high temperature applications capable of withstanding over 60 degrees C are still dominated by primary cells. Conventional rechargeable energy storage technologies which have exceptional performance at ambient temperatures employ volatile electrolytes and soft separators, resulting in catastrophic failure under heat. A composite electrolyte/separator is reported that holds the key to extend the capability of Li-ion batteries to high temperatures. A stoichiometric mixture of hexagonal boron nitride, piperidinium-based ionic liquid, and a lithium salt is formulated, with ionic conductivity reaching 3 mS cm(-1), electrochemical stability up to 5 V and extended thermal stability. The composite is used in combination with conventional electrodes and demonstrates to be stable for over 600 cycles at 120 degrees C, with a total capacity fade of less than 3%. The ease of formulation along with superior thermal and electrochemical stability of this system extends the use of Li-ion chemistries to applications beyond consumer electronics and electric vehicles.
机译:高温应用的电池,能够承受超过60摄氏度的仍然由原代细胞支配。传统的可充电能量存储技术在环境温度下具有卓越性能,采用挥发性电解质和软分离器,导致热量下的灾难性失效。报告了复合电解质/隔板,其保持钥匙,以将锂离子电池的能力延伸到高温。配制六方氮化硼,哌啶基离子液体和锂盐的化学计量混合物,离子导电率达到3mscm(-1),电化学稳定性高达5V并延伸热稳定性。复合材料与常规电极组合使用,并在120摄氏度下表明稳定超过600次循环,总容量衰落小于3%。该系统的易于配方以及卓越的热和电化学稳定性延伸使用锂离子化学物流以超越消费电子和电动车辆的应用。

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