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首页> 外文期刊>Electrochimica Acta >Novel flower-like hierarchical carbon sphere with multi-scale pores coated on PP separator for high-performance lithium-sulfur batteries
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Novel flower-like hierarchical carbon sphere with multi-scale pores coated on PP separator for high-performance lithium-sulfur batteries

机译:具有多尺寸孔的新型花样等级碳球,用于高性能锂硫电池的PP分离器上

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摘要

AbstractLithium-sulfur (Li-S) battery is considered as the next-generation of cost-efficient rechargeable battery systems to fulfill clean energy transportation systems due to its remarkable high theoretical energy density. Nevertheless, capacity fading and poor cycling stability mostly caused by polysulfide shuttle and active sulfur materials loss play an obstacle role on large-scale viable commercialization. In this paper, a flower-like hierarchical carbon sphere (FHCS) is prepared and coated on commercialized PP separator for polysulfide trapper. This carbon sphere with multi-scale pores strongly absorbs the polysulfide, further tremendously enhances the cycling performances, and the conducted carbon sphere also acts as current collector for improving the conductivity of active materials. The results show the cell demonstrates an initial discharge specific capacity of up to 1427mAhg?1at 0.2C, and high reversible capacity of 730mAhg?1with degradation rate of only 0.061% per cycle after 500 cycles at 0.5C.]]>
机译:<![cdata [ 抽象 锂 - 硫(LI-S)电池被认为是下一代具有成本效益的可充电电池系统,以满足所需的清洁能源运输系统其显着的高理论能量密度。尽管如此,容量衰落和循环稳定性差多是由多硫化物梭和活性硫磺材料损失引起的,在大规模可行的商业化方面发挥了障碍作用。本文制备了一种花样的分层碳球(FHC)并涂覆在商业化PP分离器上,用于多硫化物疏水物。这种具有多尺度孔的碳球强烈地吸收多硫化物,进一步极大地增强了循环性能,并且传导的碳球也用作集电器,用于改善活性材料的导电性。结果表明该电池显示初始排放比容量高达1427mAhg Δ1,0.2℃,高可逆容量为730mahg 在0.5℃下500次循环后,降解率仅为每循环0.061%。 ] ]

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