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Improvement in the low temperature performance of gelled polymer lithium-ion cells

机译:胶凝聚合物锂离子电池低温性能的改善

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Improved low temperature performance of gelled polymer lithium-ion cells was achieved by optimizing both electrolyte formulations and processes of gelled polymer electrolyte preparation and electrode coating. In the electrolyte system, LiPF_6 in ethylene carbonate (EC)/propylene carbonate (PC), the highest ionic conductivity value was found when the LiPF_6 concentration was around 1.0 M and the EC:PC ratio was around 1:1 (w/o) over a temperature range of -20 to 20℃. Low temperature electrochemical performance showed that cells with lower EC content electrolytes delivered finite discharge capacities under group-special-mobile (GSM) conditions, compared with nearly zero discharge capacities for cells with higher EC content electrolytes. Electrochemical impedance study showed that cells with higher EC content electrolytes had much larger impedance at low temperature than cells with lower EC content electrolytes. The best low temperature electrochemical performance was obtained when electrodes were paste-coated and the gelled polymer electrolyte was cured under ultra violet radiation. Cells prepared this way were shown to have good interfacial properties both at room temperature and at -20℃.
机译:通过优化电解质配方以及胶凝聚合物电解质的制备和电极涂覆工艺,可以改善胶凝聚合物锂离子电池的低温性能。在电解质系统中,碳酸亚乙酯(EC)/碳酸亚丙酯(PC)中的LiPF_6,当LiPF_6浓度约为1.0 M且EC:PC比约为1:1(w / o)时,离子导电率最高。在-20至20℃的温度范围内。低温电化学性能表明,具有较低EC含量电解质的电池在特殊组移动(GSM)条件下可提供有限的放电容量,而具有较高EC含量电解质的电池的放电容量几乎为零。电化学阻抗研究表明,具有较高EC含量电解质的电池在低温下的阻抗要比具有较低EC含量电解质的电池更大。当电极涂有糊剂并且凝胶化的聚合物电解质在紫外线辐射下固化时,可获得最佳的低温电化学性能。用这种方法制备的细胞在室温和-20℃下均具有良好的界面性能。

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