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Encapsulation of S/SWNT with PANI Web for Enhanced Rate and Cycle Performance in Lithium Sulfur Batteries

机译:用PANI Web封装S / SWNT以提高锂硫电池的速率和循环性能

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摘要

Lithium-sulfur batteries show great potential to compete with lithium-ion batteries due to the fact that sulfur can deliver a high theoretical capacity of 1672 mAh/g and a high theoretical energy density of 2500 Wh/kg. But it has several problems to be solved in order to achieve high sulfur utilization with high Coulombic efficiency and long cycle life of Li-S batteries. These problems are mainly caused by the dissoluble polysulfide species, which are a series of complex reduced sulfur products, associating with shuttle effect between electrodes as well as side reactions on lithium metal anode. To alleviate these challenges, we developed a sulfur-carbon nanotube (S/SWNT) composite coated with polyaniline (PANI) polymer as polysulfide block to achieve high sulfur utilization, high Coulombic efficiency, and long cycle life. The PANI coated S/SWNT composite showed a superior specific capacity of 1011 mAh/g over 100 cycles and a good rate retention, demonstrating the synergic contribution of porous carbon and conducting polymer protection to address challenges underlying sulfur cathode.
机译:锂硫电池具有与锂离子电池竞争的巨大潜力,这是因为硫可以提供1672 mAh / g的高理论容量和2500 Wh / kg的高理论能量密度。但是,为了实现高硫利用率,高库仑效率和长寿命的Li-S电池,仍然有许多问题需要解决。这些问题主要是由可溶性多硫化物物种引起的,多硫化物是一系列复杂的还原硫产物,与电极之间的穿梭效应以及锂金属阳极上的副反应有关。为了缓解这些挑战,我们开发了一种涂有聚苯胺(PANI)聚合物作为多硫化物嵌段的硫碳纳米管(S / SWNT)复合材料,以实现高硫利用率,高库仑效率和长循环寿命。 PANI涂层的S / SWNT复合材料在100个循环中表现出1011 mAh / g的优异比容量,并具有良好的速率保持率,证明了多孔碳的协同作用并进行了聚合物保护以应对硫阴极的挑战。

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