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首页> 外文期刊>Electrochimica Acta >Application of the imidazolium ionic liquid based nano-particle decorated gel polymer electrolyte for high safety lithium ion battery
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Application of the imidazolium ionic liquid based nano-particle decorated gel polymer electrolyte for high safety lithium ion battery

机译:咪唑鎓离子液体基纳米颗粒装饰凝胶聚合物电解液在高安全锂离子电池中的应用

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For the possible application in high safety lithium ion batteries, nano-particle decorated poly(methyl methacrylate-acrylonitrile-ethyl acrylate) (P(MMA-AN-EA)) based gel polymer electrolyte (GPE) using 1-ethyl-3-methylimidazolium bis(trifluoromethanesolfonyl) imide (EMITFSI) ionic liquid as plasticizer was developed in this paper for the first time. Characterization of thermal stability indicated that the MS5 (SiO2: Al2O3?=?5:5 in weight) membrane presented better property of anti-thermal shrinkage, which in turn exhibited the excellent flame retardation performance for the corresponding GPE when incorporated with ionic liquid. The developed MS5 membrane had the strongest fracture strength of 160?MPa, much higher than that of polyethylene (PE) separator (138?MPa). Electrochemical analysis suggested that the GPE exhibited the enhanced ionic conductivity of 3.2?×?10?3?S?cm?1at ambient temperature, caused by its better porous structure with the highest porosity of 70%. The temperature dependence of ionic conductivity followed Vogel-Tamman-Fulcher (VTF) behavior. Oxidative potential of MS5 based GPE was significantly improved from 4.7?V (vs. Li+/Li) (PE saturated with ionic liquid) to 5.7?V. Theoretical calculation results showed that the stronger interaction between lithium ions and TFSI?anions was responsible for the better compatibility of GPE with the electrodes. Thus, MS5 based GPE exhibited excellent cyclic stability, which kept 95.1% capacity retention after 100 cycles under 0.2C rate in LiFePO4/GPE/Li type coin cell at room temperature, while retained 88.4% of initial discharge capacity at high temperature of 55?°C. Due to the enhanced transference number of lithium ion of the GPE, LiFePO4cathode in LiFePO4/GPE/Li coin cell also presented superior rate performance.
机译:对于高安全锂离子电池的可能施加,纳米粒子装饰的聚(甲基丙烯酸甲酯 - 丙烯腈 - 丙烯酸乙酯)(P(MMA-AN-EA))的基于凝胶聚合物电解质(GPE)使用1-乙基-3-甲基咪唑鎓本文首次开发为增塑剂作为增塑剂的二苯(三氟甲磺酰乙烯基)酰亚胺(Emitfsi)离子液体。热稳定性的表征表明MS5(SiO 2:Al 2 O 3?=→5:5重量)膜呈现出抗热收缩的更好性,当掺入离子液体时,又表现出相应的GPE的优异阻燃性能。开发的MS5膜具有最强的裂缝强度为160μm≤MPa,远高于聚乙烯(PE)分离器(138℃)。电化学分析表明GPE表现出增强的离子电导率为3.2?×10?3?S≤10℃?1AT环境温度,由其更好的多孔结构引起的,其孔隙率为70%。离子电导率的温度依赖性跟随Vogel-Tamman-Furecher(VTF)行为。基于MS5的GPE的氧化潜力从4.7ΔV(与离子液体饱和)显着提高到5.7〜5。理论计算结果表明,锂离子和TFSI之间的相互作用较强,阴离子的负责GPE与电极的更好相容性。因此,基于MS5的GPE表现出优异的循环稳定性,其在室温下在LiFePO4 / GPE / Li型硬币电池0.2℃速率下保持95.1%的容量保留,而在高温下保留88.4%的初始放电容量? °C。由于GPE的锂离子的转移数增加,LiFePO4 / GPE / Li硬币细胞的LiFePo4cathode也呈现出优异的速率性能。

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