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首页> 外文期刊>Electrochimica Acta >Investigation on polyethylene supported poly(butyl methacrylate-acrylonitrile-styrene) terpolymer based gel electrolyte reinforced by doping nano-SiO2 for high voltage lithium ion battery
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Investigation on polyethylene supported poly(butyl methacrylate-acrylonitrile-styrene) terpolymer based gel electrolyte reinforced by doping nano-SiO2 for high voltage lithium ion battery

机译:用掺杂纳米SiO2加固高压锂离子电池加固聚乙烯负载(甲基丙烯酸丙烯酸酯 - 丙烯腈 - 苯乙烯 - 胶合电解质的研究

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In this paper, we design a novel gel polymer electrolyte (GPE), based on polyethylene (PE) supported poly (butyl methacrylate-acrylonitrile-styrene) (P(BMA-AN-St)) terpolymer reinforced by doping 10 wt.% nano-SiO2, to be possible application in high voltage lithium ion battery. The physical characterization indicates that P(BMA-AN-St)/SiO2/PE membrane has multi-layered and cross-linked network structure with the pore diameter of about 1 mm, leading to the highest electrolyte uptake ability of 257% compared with the value of 118% for PE support. Electrochemical performance exhibits that the corresponding GPE presents highest ionic conductivity of 1.9 x 10(-3) S cm(-1) at room temperature and the improved oxidative stability from 4.2 V (PE support saturated with liquid electrolyte) to 5.2 V (vs. Li/Li+). Thus, the high voltage cathode LiNi0.5Mn1.5O4 using nano-SiO2 doped GPE presents excellent cyclic stability and rate performance, which retains 93.0% of its initial discharge capacity after 150 cycles at 0.2C rate and keeps 95.0% discharge capacity at 2C rate of that at 0.1C rate, while PE support saturated with liquid electrolyte has 87.9% capacity retention after 150 cycles and with the rate capacity value of 86.8% at the same rate test condition. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,我们设计了一种基于聚乙烯(PE)负载的聚(甲基丙烯酸丁酯 - 丙烯腈 - 苯乙烯)(P(BMA-AN-ST))掺杂10重量加固的聚乙烯(PE)的聚乙烯(甲基丙烯酸丁酯 - 丙烯腈 - 苯乙烯)的新型凝胶聚合物电解质(GPE)。%纳米-SiO2,在高压锂离子电池中可能适用。物理表征表明,P(BMA-AN-ST)/ SiO 2 / PE膜具有多层和交联网络结构,孔径为约1mm,导致最高电解质吸收能力为257%的相比PE支持的价值118%。电化学性能表现出相应的GPE在室温下具有1.9×10(-3)厘米(-1)的最高离子电导率,并且从4.2V(用液体电解质饱和)的改善的氧化稳定性至5.2V(与Li / Li +)。因此,使用纳米SiO2掺杂GPE的高压阴极LINI0.5MN1.5O4具有优异的环状稳定性和速率性能,其在0.2C速率下保持150次循环后的93.0%的初始放电容量,并且在2C速率下保持95.0%的放电容量在0.1℃的速率下,在150次循环后饱和液体电解质的PE载能力保持87.9%,并且在相同的速率测试条件下的速率容量值为86.8%。 (c)2017 Elsevier Ltd.保留所有权利。

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