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Performances Of Lithium-Ion Cells Constituted Of NMC // LTO Electrodes And Ionic Liquid Or Carbonates-Based Electrolytes

机译:NMC // LTO电极和离子液体或碳酸盐基电解质构成的锂离子电池的性能

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Commercial lithium-ion batteries could lead to safety issues related to the use of flammable carbonates as electrolyte solvents. To provide safer cells, ionic liquids are widely studied as they possess negligible vapour pressure and reduced flammability. This paper presents a comparison between carbonates and ionic liquid-based electrolytes, comprising bis(trifluoromethanesulfonyl)imide [NTf_2] anion and imidazolium [Im] or pyrrolidinium [PYR] cations. Lithium-ion cells constituted of Li_4Ti_5O_(12) (LTO) and LiNi_(1/3)Mn_(1/3)Co_(1/3)O_2 (NMC) electrodes were assembled and cycled at 25 and 60 ℃ with these different electrolytes. These systems were investigated by cyclic voltammetry (CV) and electrochemical cycling. Diffusion coefficients of lithium ions were also determined by CV techniques and by liquid NMR.
机译:商用锂离子电池可能导致与使用易燃碳酸盐作为电解质溶剂有关的安全问题。为了提供更安全的电池,人们对离子液体进行了广泛的研究,因为它们的蒸气压可以忽略不计并且可燃性降低。本文介绍了碳酸盐和离子液体电解质的比较,该电解质包括双(三氟甲磺酰基)酰亚胺[NTf_2]阴离子和咪唑鎓[Im]或吡咯烷鎓[PYR]阳离子。组装由Li_4Ti_5O_(12)(LTO)和LiNi_(1/3)Mn_(1/3)Co_(1/3)O_2(NMC)电极组成的锂离子电池,并在25和60℃下使用这些不同的电解质进行循环。通过循环伏安法(CV)和电化学循环研究了这些系统。锂离子的扩散系数也通过CV技术和液体NMR确定。

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