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Cross-stacked carbon nanotube film as an additional built-in current collector and adsorption layer for high-performance lithium sulfur batteries

机译:交叉堆叠的碳纳米管薄膜可作为高性能锂硫电池的附加内置集电器和吸附层

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Cross-stacked carbon nanotube (CNT) film is proposed as an additional built-in current collector and adsorption layer in sulfur cathodes for advanced lithium sulfur (Li-S) batteries. On one hand, the CNT film with high conductivity, microstructural rough surface, high flexibility and mechanical durability retains stable and direct electronic contact with the sulfur cathode materials, therefore decreasing internal resistivity and suppressing polarization of the cathode. On the other hand, the highly porous structure and the high surface area of the CNT film provide abundant adsorption points to support and confine sulfur cathode materials, alleviate their aggregation and promote high sulfur utilization. Moreover, the lightweight and compact structure of the CNT film adds no extra weight or volume to the sulfur cathode, benefitting the improvement of energy densities. Based on these characteristics, the sulfur cathode with a 100-layer cross-stacked CNT film presents excellent rate performances with capacities of 986, 922 and 874 mAh g(-1) at cycling rates of 0.2C, 0.5C and 1C for sulfur loading of 60 wt%, corresponding to an improvement of 52%, 109% and 146% compared to that without a CNT film. Promising cycling performances are also demonstrated, offering great potential for scaled-up production of sulfur cathodes for Li-S batteries.
机译:交叉堆叠碳纳米管(CNT)膜被建议用作高级锂硫(Li-S)电池硫磺阴极中的附加内置集电器和吸附层。一方面,具有高电导率,微结构粗糙表面,高柔韧性和机械耐久性的CNT膜保持与硫阴极材料的稳定且直接的电子接触,因此降低了内部电阻率并抑制了阴极的极化。另一方面,CNT膜的高孔隙率结构和高表面积提供了丰富的吸附点以支撑和限制硫阴极材料,减轻了它们的聚集并促进了高硫利用率。而且,CNT膜的轻质且紧凑的结构不会给硫阴极增加额外的重量或体积,有利于提高能量密度。基于这些特性,具有100层交叉堆叠CNT膜的硫阴极在​​以0.2C,0.5C和1C的循环速率加载硫时,具有出色的速率性能,容量分别为986、922和874 mAh g(-1)。相对于没有CNT膜的膜,其含量为60wt%,相应地提高了52%,109%和146%。还展示了令人鼓舞的循环性能,为大规模生产用于Li-S电池的硫阴极提供了巨大潜力。

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