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首页> 外文期刊>Journal of power sources >Mechanisms for electrochemical performance enhancement by the salt-type electrolyte additive, lithium difluoro(oxalato)borate, in high-voltage lithium-ion batteries
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Mechanisms for electrochemical performance enhancement by the salt-type electrolyte additive, lithium difluoro(oxalato)borate, in high-voltage lithium-ion batteries

机译:盐型电解质添加剂二氟(草酸)硼酸锂在高压锂离子电池中提高电化学性能的机理

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摘要

Lithium difluoro(oxalato) borate (LiDFOB) with one oxalate moiety bonded to a central boron core was employed as a salt-type additive to enhance the interfacial stabilities of high-voltage Li-rich cathodes and graphite anodes. Our investigation revealed that the LiDFOB additive modified the surface film on the electrodes and effectively restrained degradation of the cycling performance of the electrodes. Investigation of the surface chemistries of the electrodes confirmed that LiDFOB produces a LiF-less surface film on the Li-rich cathode and a LiF-rich surface film on the graphite anode. Moreover, the use of 1% LiDFOB drastically improved the rate capabilities of Li-rich cathodes and graphite anodes. Within 100 cycles at a rate of C/2 at 25 degrees C, only 45.8% of the initial discharge capacity of a high-voltage Li-rich/graphite full cell was delivered in the baseline electrolyte, while the LiDFOB-containing electrolyte retained 82.7%. (C) 2017 Elsevier B. V. All rights reserved.
机译:具有一个草酸盐部分键合到中心硼核上的二氟乙二酸硼酸锂(LiDFOB)被用作盐型添加剂,以增强高压富锂阴极和石墨阳极的界面稳定性。我们的研究表明,LiDFOB添加剂修饰了电极上的表面膜,并有效地抑制了电极循环性能的下降。对电极表面化学性质的研究证实,LiDFOB在富锂阴极上产生无LiF的表面膜,在石墨阳极上产生无LiF的表面膜。此外,使用1%LiDFOB可以大大提高富锂阴极和石墨阳极的倍率能力。在25°C下以C / 2的速率在100次循环中,基线富电解质/高压富锂/石墨全电池的初始放电容量仅达到45.8%,而含LiDFOB的电解质保留了82.7。 %。 (C)2017 Elsevier B.V.保留所有权利。

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