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Effects of vinylene carbonate on high temperature storage of high voltage Li-ion batteries

机译:碳酸亚乙烯酯对高压锂离子电池高温存储的影响

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The effects of vinylene carbonate (VC) on high temperature storage of high voltage Li-ion batteries are investigated. 1.3 M of LiPF6 dissolved in ethylene carbonate (EC), ethylmethyl carbonate (EMC) and dimethyl carbonate (DMC) of 3:3:4 volume ratio is used as original electrolyte for 18650 cylindrical cells with LiCoC>2 cathode and graphite anode. VC is then added to electrolyte. At the initial stage of the high temperature storage, higher open-circuit voltage (OCV) is maintained when increasing the VC concentration. As the storage time increases, OCV of higher VC concentration drops gradually, and then the gas evolution takes place abruptly. Gas analysis shows methane (CH4) decreases with increase of the VC concentration due to formation of stable solid electrolyte interface (SEI) layer on the graphite. Since the residual VC after formation of the SEI layer decomposes on the cathode surface, carbon dioxide (CO2) dramatically increases on the cathode with the VC concentration, leaving poly(VC) film at the anode surface, as suggested by XPS test results.
机译:研究了碳酸亚乙烯酯(VC)对高压锂离子电池高温存储的影响。将溶解在体积比为3:3:4的碳酸亚乙酯(EC),碳酸乙基甲基酯(EMC)和碳酸二甲酯(DMC)中的1.3 M LiPF6用作具有LiCoC> 2阴极和石墨阳极的18650圆柱形电池的原始电解质。然后将VC添加到电解质中。在高温存储的初始阶段,当增加VC浓度时,将维持较高的开路电压(OCV)。随着储存时间的增加,VC浓度较高的OCV逐渐下降,然后气体突然逸出。气体分析表明,由于在石墨上形成稳定的固体电解质界面(SEI)层,甲烷(CH4)随着VC浓度的增加而降低。由于XPS测试结果表明,SEI层形成后残留的VC在阴极表面上分解,因此随着VC浓度的增加,阴极上的二氧化碳(CO2)急剧增加,从而在阳极表面留下了聚(VC)膜。

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