首页> 外文期刊>Journal of power sources >Topological polymer electrolyte containing poly(pinacol vinylboronate) segments composited with ceramic nanowires towards ambient-temperature superior performance all-solid-state lithium batteries
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Topological polymer electrolyte containing poly(pinacol vinylboronate) segments composited with ceramic nanowires towards ambient-temperature superior performance all-solid-state lithium batteries

机译:含聚(频哪醇乙烯基硼酸酯)链段的拓扑聚合物电解质与陶瓷纳米线复合而成,可在室温下提供优异性能的全固态锂电池

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摘要

A topological structural polymer is designed and synthesized by sequential living polymerization of pinacol vinylboronate and poly(ethylene glycol) methyl ether methacrylate using hyperbranched polystyrene as the core. The as-synthesized polymer containing lithium salt is tasted onto the ceramic electrostatic spinning film to prepare the composite solid polymer electrolyte. As predicted, the electrolyte shows a high ionic conductivity of 9.63 x 10(-5)S cm(-1) at room temperature, which likely due to the creation of conductive network on the surfaces of the nanowires. In addition, introduction of poly(pinacol vinylboronate) segments onto the hyper branched polymer strongly improves the electrochemical stability (reaches 5.2 V) of the electrolyte in comparison to the one without poly(pinacol vinylboronate) chains. As a result, the LiFeO4/Li cell using the electrolyte presents excellent long cycle stability at 50 degrees C (average discharge capacity of 130 mA h g(-1) with coulombic efficiency close to 100% over 800 cycles at 0.5 C) as well as very good cell performance at room temperature (discharge capacity reaches 162 tnAh g(-1) with average coulombic efficiency of similar to 100%). More importantly, we also confirm that the electrolyte can be applied to high-voltage cathode materials, such as LiCoO2 and Li1.2Mn0.5Ni0.2O2-based cathodes, which also shows satisfactory cell performance.
机译:通过以高支化聚苯乙烯为核,将频哪醇乙烯基硼酸酯和聚(乙二醇)甲基醚甲基丙烯酸酯相继活性聚合,设计并合成拓扑结构聚合物。将含有锂盐的合成后的聚合物品尝到陶瓷静电纺丝膜上,以制备复合固体聚合物电解质。如所预测的,电解质在室温下显示出9.63 x 10(-5)S cm(-1)的高离子电导率,这很可能是由于在纳米线表面上形成了导电网络。另外,与没有聚(频哪醇乙烯基硼酸酯)链的电解质相比,将聚(频哪醇乙烯基硼酸酯)链段引入到超支化聚合物上极大地改善了电解质的电化学稳定性(达到5.2V)。结果,使用电解质的LiFeO4 / Li电池在50摄氏度时表现出出色的长期循环稳定性(在0.5摄氏度时800次循环中,平均放电容量为130 mA hg(-1),库仑效率接近100%),以及在室温下具有非常好的电池性能(放电容量达到162 tnAh g(-1),平均库仑效率接近100%)。更重要的是,我们还确认该电解质可用于高压阴极材料,例如LiCoO2和Li1.2Mn0.5Ni0.2O2基阴极,这也显示出令人满意的电池性能。

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