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Enhanced performance of lithium sulfur batteries with conductive polymer modified separators

机译:带有导电聚合物改性隔膜的锂硫电池性能增强

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The separators of Li-S batteries are modified with polypyrrole (PPy) nanotubes, PPy nanowires and reduced graphene oxide (rGO), respectively. All the conductive materials for the separator surface decoration can inhibit the migration of lithium polysulfides in the electrolyte and decrease the polarization of the sulfur cathode. Thus, the shuttle effect and redistribution of the active material can be suppressed during the charge/discharge process, resulting in enhanced performance. Moreover, the adsorption effect of PPy to lithium polysulfides is stronger compared to that of rGO, and the wettability of the PPy modified separators towards the electrolyte is much better, resulting in further enhanced electrochemical performance of Li-S batteries. Particularly, with approximately 2.5-3 mg cm(-2) sulfur loading, the Li-S battery using the PPy nanotube modified separator displays an initial discharge capacity of 1110.4 mA h g(-1), and a retained capacity of 801.6 mA h g(-1) after 300 cycles at 0.5C, demonstrating an average coulombic efficiency up to 90.6% in the LiNO3-free electrolyte.
机译:Li-S电池的隔膜分别用聚吡咯(PPy)纳米管,PPy纳米线和还原氧化石墨烯(rGO)改性。用于隔板表面装饰的所有导电材料均可以抑制多硫化锂在电解质中的迁移并降低硫阴极的极化。因此,可以在充电/放电过程中抑制活性物质的穿梭效应和再分布,从而提高性能。此外,与rGO相比,PPy对多硫化锂的吸附效果更强,并且PPy改性隔膜对电解质的润湿性更好,从而进一步增强了Li-S电池的电化学性能。特别是在硫含量约为2.5-3 mg cm(-2)的情况下,使用PPy纳米管改性隔膜的Li-S电池的初始放电容量为1110.4 mA hg(-1),保留容量为801.6 mA hg( -1)在0.5C下循环300次后,表明不含LiNO3的电解质的平均库仑效率高达90.6%。

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