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Electrolytic characteristics of asymmetric alky1 carbonates solvents for lithium batteries

机译:锂电池不对称碳酸烷基酯溶剂的电解特性

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Asymmetric alkyl carbonate solvents (ACS) have been used as components of liquid electrolyte systems designed for Li-ion cells. Four ACS were selected: methyl-propyl carbonate (MPC), ethyl-propyl carbonate (EPC), methyl-isopropyl carbonate (MiPC) and ethyl-isopropyl carbonate (EiPC). The common features of all these ACS are a low melting point and a low viscosity, enhancing electrolytes conductivity toward low temperatures. The viscosity and the conductivity (salt: LiPF_6, 1 M) of the ACS and their mixtures with ethylene carbonate (EC, 50% v/v), were studied as a function of the temperature (T). Arrhenius types plots of the logarithm of the conductivity versus 1/T reveals that ACS and ACS/EC mixtures are vitreous at low temperatures. The electrochemical and cycling behaviors of a graphite anode and a LiCoO_2 cathode have been evaluated using coin cells with a Li counter electrode. The charge and discharge capacities have been determined as a function of the cycle number. MiPC which builds an highly stable surface film on the graphite electrode, can be used as a single-solvent electrolyte with only a slight decrease in capacity of the LiCoO_2 cathode. All ACS/EC mixtures exhibit good filming properties at the negative electrode and no capacity loose at the positive electrode. The ability of some of the electrodes-electrolyte systems to undergo increased rates of discharge (C/5 to C/2) has been also evaluated.
机译:不对称碳酸烷基酯溶剂(ACS)已用作专为锂离子电池设计的液体电解质系统的组分。选择了四个ACS:碳酸甲基丙酯(MPC),碳酸乙基丙酯(EPC),碳酸甲基异丙酯(MiPC)和碳酸乙基异丙酯(EiPC)。所有这些ACS的共同特征是低熔点和低粘度,从而提高了电解质在低温下的电导率。研究了ACS及其与碳酸亚乙酯(EC,50%v / v)的混合物的粘度和电导率(盐:LiPF_6,1 M)随温度(T)的变化。电导率与1 / T的对数的Arrhenius类型图表明,ACS和ACS / EC混合物在低温下为玻璃态。使用带有锂对电极的纽扣电池已经评估了石墨阳极和LiCoO_2阴极的电化学和循环行为。已确定充电和放电容量是循环次数的函数。可以在石墨电极上建立高度稳定的表面膜的MiPC用作单溶剂电解质,而LiCoO_2阴极的容量只会略有下降。所有ACS / EC混合物在负极均显示出良好的成膜性能,而在正极则没有松散的容量。还评估了某些电极-电解质系统经历增加的放电速率(C / 5至C / 2)的能力。

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