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Targeting adequate thermal stability and fire safety in selecting ionic liquid-based electrolytes for energy storage

机译:在选择用于储能的离子液体电解质时,要具有足够的热稳定性和防火安全性

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摘要

The energy storage market relating to lithium based systems regularly grows in size and expands in terms of a portfolio of energy and power demanding applications. Thus safety focused research must more than ever accompany related technological breakthroughs regarding performance of cells, resulting in intensive research on the chemistry and materials science to design more reliable batteries. Formulating electrolyte solutions with nonvolatile and hardly flammable ionic liquids instead of actual carbonate mixtures could be safer. However, few definitions of thermal stability of electrolytes based on ionic liquids have been reported in the case of abuse conditions (fire, shortcut, overcharge or overdischarge). This work investigates thermal stability up to combustion of l-butyl-3-methylimidazolium bis(trifluoromethanesulfonyl)imide ([C1C4lm]tNTf2]) and 1-butyl-l-methylpyrrolidinium bisftrifluoromethanesulfonyOimide ([PYRi4][NTf2D ionic liquids, and their corresponding electrolytes containing lithium bis(trifluoromethanesulfonyl)imide LiNTf2. Their possible routes of degradation during thermal abuse testings were investigated by thermodynamic studies under several experimental conditions. Their behaviours under fire were also tested, including the analysis of emitted compounds.
机译:与基于锂的系统有关的储能市场规模不断扩大,并且在能源和电力需求应用的产品组合方面不断扩大。因此,针对安全性的研究必须比以往任何时候都更需要伴随有关电池性能的技术突破,从而需要对化学和材料科学进行深入研究,以设计出更可靠的电池。用不挥发且难燃的离子液体代替实际的碳酸盐混合物配制电解质溶液可能更安全。但是,在滥用情况(起火,捷径,过充电或过放电)的情况下,几乎没有关于基于离子液体的电解质的热稳定性的定义的报道。这项工作研究了直至丁基-1-甲基-3-咪唑鎓双(三氟甲烷磺酰基)酰亚胺([C1C4lm] tNTf2])和1-丁基-1-甲基吡咯烷鎓双氟三氟甲烷磺酰亚胺([PYRi4] [NTf2D离子液体以及它们相应的电解质)的热稳定性。含有双(三氟甲磺酰基)酰亚胺锂LiNTf2的化合物,通过热力学研究在几种实验条件下研究了它们在热滥用测试中可能的降解途径,还测试了它们在火下的行为,包括对排放化合物的分析。

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