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首页> 外文期刊>Journal of power sources >Improved electrolytes for Li-ion batteries: Mixtures of ionic liquid and organic electrolyte with enhanced safety and electrochemical performance
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Improved electrolytes for Li-ion batteries: Mixtures of ionic liquid and organic electrolyte with enhanced safety and electrochemical performance

机译:改进的锂离子电池电解液:离子液体和有机电解液的混合物,具有增强的安全性和电化学性能

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摘要

Physical and electrochemical characteristics of Li-ion battery systems based on LiFePO_4 cathodes and graphite anodes with mixture electrolytes were investigated. The mixed electrolytes are based on an ionic liquid (IL), and organic solvents used in commercial batteries. We investigated a range of compositions to determine an optimum conductivity and non-flammability of the mixed electrolyte. This led us to examine mixtures of ILs with the organic electrolyte usually employed in commercial Li-ion batteries, i.e., ethylene carbonate (EC) and diethylene carbonate (DEC). The IL electrolyte consisted of (trifluoromethyl sulfonylimide) (TFS1) as anion and 1 -ethyl-3-methyleimidazolium (EMI) as the cation. The physical and electrochemical properties of some of these mixtures showed an improvement characteristics compared to the constituents alone. The safety was improved with electrolyte mixtures; when IL content in the mixture is >40%, no flammability is observed. A stable SE1 layer was obtained on the MCMB graphite anode in these mixed electrolytes, which is not obtained with IL containing the TFSI-anion. The high-rate capability of LiFePO_4 is similar in the organic electrolyte and the mixture with a composition of 1:1. The interface resistance of the LiFePO_4 cathode is stabilized when the ILis added to the electrolyte. A reversible capacity of 155 mAh g~(-1) at C/12 is obtained with cells having at least some organic electrolyte compared to only 124 mAh g~(-1) with pure IL. With increasing discharge rate, the capacity is maintained close to that in the organic solvent up to 2 C rate. At higher rates, the results with mixture electrolytes start to deviate from the pure organic electrolyte cell. The evaluation of the Li-ion cells; LiFePO_4//Li_4Ti_5O_(12) with organic and, 40% mixture electrolytes showed good 1st CE at 98.7 and 93.0%, respectively. The power performance of both cell configurations is comparable up to 2C rate. This study indicates that safety and electrochemical performance of the Li-ion battery can be improved by using mixed IL and organic solvents.
机译:研究了基于LiFePO_4阴极和石墨阳极混合电解质的锂离子电池系统的物理和电化学特性。混合电解质基于离子液体(IL)和商用电池中使用的有机溶剂。我们研究了一系列组成,以确定混合电解质的最佳电导率和不燃性。这导致我们研究了ILs与通常在商用锂离子电池中使用的有机电解质的混合物,即碳酸亚乙酯(EC)和碳酸二亚乙酯(DEC)。 IL电解质由作为阴离子的(三氟甲基磺酰亚胺)(TFS1)和作为阳离子的1-乙基-3-甲基亚咪唑鎓(EMI)组成。与单独的组分相比,这些混合物中的一些的物理和电化学性质显示出改善的特性。电解液混合物提高了安全性;当混合物中IL含量> 40%时,未观察到可燃性。在这些混合电解质中,在MCMB石墨阳极上获得了稳定的SE1层,而含TFSI阴离子的IL则无法获得稳定的SE1层。 LiFePO_4的高倍率能力在有机电解质和组成为1:1的混合物中相似。当将IL添加到电解质中时,LiFePO_4阴极的界面电阻稳定。与具有纯IL的只有124mAh g〜(-1)相比,具有至少一些有机电解质的电池在C / 12下获得了155mAh g〜(-1)的可逆容量。随着放电速率的增加,容量可保持接近有机溶剂中的容量(最高2 C速率)。在较高的速率下,混合电解质的结果开始偏离纯有机电解质电池。锂离子电池的评估;具有有机电解质和40%混合电解质的LiFePO_4 // Li_4Ti_5O_(12)分别具有98.7%和93.0%的良好1st CE。两种电池配置的功率性能在2C速率下均具有可比性。这项研究表明,使用混合IL和有机溶剂可以改善锂离子电池的安全性和电化学性能。

著录项

  • 来源
    《Journal of power sources》 |2009年第3期|845-852|共8页
  • 作者单位

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

    Institut de Recherche d'Hydro-Quebec, 1800 Lionel Boulet, Varennes. QCJ3X 1S1, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ionic liquid; LiFePO_4; graphite; li-ion battery; electrolyte;

    机译:离子液体LiFePO_4;石墨;锂离子电池电解质;

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