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Lifetime limit of tris(trimethylsilyl) phosphite as electrolyte additive for high voltage lithium ion batteries

机译:亚磷酸三(三甲基甲硅烷基)酯作为锂离子电池电解液添加剂的使用寿命极限

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摘要

The tris(trimethylsilyl) phosphite (TMSPi) is considered as an ideal electrolyte additive for lithium ion batteries. In this work, its positive effect as well as its failure mechanism in a LiPF6 containing electrolyte was studied by means of selected electrochemical, structural and analytical techniques. The LiNi0.5Co0.2Mn0.3O2/graphite cells with TMSPi as electrolyte additive were cycled between 2.8 and 4.6 V. Thanks to the compact cathode electrolyte interphase formed by the oxidative decomposition of TMSPi in a freshly prepared TMSPi containing electrolyte, both the discharge capacity and the cycling stability of cells were enhanced. However, our results also show that TMSPi actually reacts with LiPF6 at room temperature. TMSPi is consumed by this spontaneous reaction after aging for certain time. In addition, a part of the fluorophosphates, generated from the hydrolysis of LiPF6, is bonded to one or two TMS groups, causing a decrease in the fluorophosphate content in the CEI film. Consequently, the cycling stability of the lithium ion cells with aged TMSPi containing electrolyte deteriorates. The obtained results offer important insights into the practical application of TMSPi, which means that TMSPi can only be used as an effective additive in a freshly prepared LiPF6 containing electrolyte.
机译:亚磷酸三(三甲基甲硅烷基)酯(TMSPi)被认为是锂离子电池的理想电解质添加剂。在这项工作中,通过选择的电化学,结构和分析技术研究了其在含LiPF6的电解液中的积极作用及其破坏机理。以TMSPi作为电解质添加剂的LiNi0.5Co0.2Mn0.3O2 /石墨电池在2.8V至4.6V之间循环。由于在新鲜制备的含TMSPi电解质中,TMSPi的氧化分解形成了紧凑的阴极电解质中间相,因此放电容量增强了细胞的循环稳定性。但是,我们的结果还表明,TMSPi实际上在室温下会与LiPF6反应。老化一定时间后,这种自发反应会消耗TMSPi。另外,由LiPF 6的水解产生的一部分氟磷酸盐结合至一个或两个TMS基团,导致CEI膜中氟磷酸盐含量的减少。因此,具有老化的含有电解质的TMSPi的锂离子电池的循环稳定性降低。获得的结果为TMSPi的实际应用提供了重要的见识,这意味着TMSPi只能用作新鲜制备的含LiPF6电解质的有效添加剂。

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