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首页> 外文期刊>Journal of power sources >An electrolyte additive capable of scavenging HF and PF5 enables fast charging of lithium-ion batteries in LiPF_6-based electrolytes
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An electrolyte additive capable of scavenging HF and PF5 enables fast charging of lithium-ion batteries in LiPF_6-based electrolytes

机译:能够清除HF和PF5的电解质添加剂可以使基于LiPF_6的电解质中的锂离子电池快速充电

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摘要

Fast-charging lithium-ion batteries (LIBs) can be achieved using structurally optimized electrodes and electrolytes. Electrolytes largely affect the interfacial structures of electrodes that are critical to reducing charging time of LIBs without sacrificing battery durability. However, most widely used LiPF6-based electrolytes suffer from reactive species, such as HF and PF5, that seriously damage interfacial structures of electrodes on repeated cycling and form resistive species at the electrode surface that hamper the fast charging of LIBs. To resolve these detrimental effects of LiPF6-based electrolytes, we report an electrolyte additive, (trimethylsily)isothiocyanate (TMSNCS) based on aminosilane, with a high electron donating ability that can scavenge HF and PF5. TMSNCS effectively deactivates reactive species and attains long-term stability of interfacial layers formed on anodes and cathodes in LiPF6-based electrolytes. After 300 cycles at a 2C charge rate and a 1C discharge rate, the NCM622/graphite full cell with 0.1% TMSNCS delivers a superior discharge capacity of 144 mAh/g and exhibits an excellent capacity retention of 91.8%. Furthermore, the stabilization of PF5 by the TMSNCS additive drastically alleviates undesired decomposition reactions of fluoroethylene carbonate (FEC) and enhances high-temperature performances of the FEC-containing full cells.
机译:使用结构优化的电极和电解质可以实现快速充电的锂离子电池(LIB)。电解质在很大程度上影响电极的界面结构,这对于减少LIB的充电时间而不牺牲电池寿命至关重要。但是,使用最广泛的基于LiPF6的电解质会受到反应性物质的影响,例如HF和PF5,它们在反复循环时会严重损坏电极的界面结构,并在电极表面形成电阻性物质,从而阻碍LIB的快速充电。为了解决基于LiPF6的电解质的这些不利影响,我们报告了一种基于氨基硅烷的电解质添加剂(三甲基甲硅烷基)异硫氰酸酯(TMSNCS),具有高电子给体能力,可以清除HF和PF5。 TMSNCS有效地钝化了活性物质,并获得了在基于LiPF6的电解质中在阳极和阴极上形成的界面层的长期稳定性。在2C充电速率和1C放电速率下进行300次循环后,具有0.1%TMSNCS的NCM622 /石墨全电池具有144 mAh / g的出色放电容量,并具有91.8%的出色容量保持率。此外,通过TMSNCS添加剂稳定PF5可以极大地减轻不希望的碳酸氟代亚乙酯(FEC)的分解反应,并提高含FEC的全电池的高温性能。

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