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An improved method for synthesis of lithium difluoro(oxalato)borate and effects of sulfolane on the electrochemical performances of lithium-ion batteries

机译:一种改进的合成二氟(草酸酯)硼酸锂的方法以及环丁砜对锂离子电池电化学性能的影响

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摘要

Lithium difluoro(oxalato)borate (LiODFB) (99.5%, by weight) is synthesized by an improved method, with the co-product of LiBF_4 (99.5%, by weight). The electrochemical behaviors of sulfolane (SL) with LiODFB are studied by employment dimethyl sulfite (DMS) as a mixed solvent. It shows that 0.9 mol L~(-1) LiODFB-SL/DMS (1:1, by volume) electrolyte has considered stability against oxidative decomposition (>5.5 V) and satisfactory conductivity. Electrochemical reductions of SL and DMS would occur nearly at the same level of ODFB anions. Further studies show that SL is the main and key reason during the formation process of an excellent solid electrolyte interphase (SEI) layer. When used in Li/MCMB cells, 0.9 mol L~(-1) LiODFB-SL/DMS electrolyte exhibits not only excellent film-forming characteristics, but also stable cycle performance. Besides, when used in LiFePO_4/Li cells, 0.9 mol L~(-1) LiODFB-SL/DMS electrolyte exhibits several advantages, for example, the more stable electrochemical performances even at elevated and relatively low temperatures.
机译:通过改进的方法与LiBF_4的副产物(重量百分比为99.5%)合成了二氟(草酸酯)硼酸锂(LiODFB)(重量百分比为99.5%)。通过使用亚硫酸二甲酯(DMS)作为混合溶剂研究了环丁砜(SL)与LiODFB的电化学行为。结果表明,0.9 mol L〜(-1)LiODFB-SL / DMS(体积比为1:1)电解质被认为具有抗氧化分解的稳定性(> 5.5 V)和令人满意的电导率。 SL和DMS的电化学还原将在相同水平的ODFB阴离子下发生。进一步的研究表明,SL是形成优质固体电解质中间相(SEI)层的主要和关键原因。当用于Li / MCMB电池时,0.9 mol L〜(-1)LiODFB-SL / DMS电解质不仅具有出色的成膜特性,而且还具有稳定的循环性能。此外,当用于LiFePO_4 / Li电池中时,0.9 mol L〜(-1)LiODFB-SL / DMS电解质具有多个优点,例如,即使在升高的温度和相对较低的温度下,电化学性能也更加稳定。

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