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Li2S Nanocrystals Confined in Free-Standing Carbon Paper for High Performance Lithium-Sulfur Batteries

机译:Li2S纳米晶体被限制在用于高性能锂硫电池的独立碳纸中

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Lithium sulfide (Li2S) with a high theoretical capacity of 1166 mAh g(-1) is a promising cathode material for Li-S batteries as it allows for the use of lithium-free anodes. However, a large overpotential (similar to 1 V) is usually needed to activate microsized Li2S particles due to their low electronic and ionic conductivities. Here, nano-Li2S/carbon paper electrodes are developed via a simple Li2S solution filtration method. Li2S nanocrystals with a size less than 10 nm are formed uniformly in the pores of carbon paper network. These electrodes show an unprecedented low potential difference (0.1 V) in the first and following charges, also show high discharge capacities, good rate capability, and excellent cycling performance. More specifically, the nano-Li2S/carbon nanotube paper electrodes show a reversible capacity of 634 mAh g(-1) with a capacity retention of 92.4% at 1C rate from the 4th to 100th cycle, corresponding to a low capacity fading rate of 0.078% per cycle. These results demonstrate a facile and scalable electrode fabrication process for making high performance nano-Li2S/carbon paper electrodes, and the superior performance makes them promising for use with lithium metal-free anodes in rechargeable Li-S batteries for practical applications.
机译:具有1166 mAh g(-1)的高理论容量的硫化锂(Li2S)是用于Li-S电池的有前途的正极材料,因为它允许使用无锂负极。然而,由于它们的低电子和离子电导率,通常需要大的超电势(类似于1 V)来激活微型Li2S颗粒。在这里,通过简单的Li2S溶液过滤方法开发了纳米Li2S /碳纸电极。小于10nm的Li2S纳米晶体均匀地形成在碳纸网络的孔中。这些电极在首次充电和后续充电时显示出前所未有的低电势差(0.1 V),还显示出高放电容量,良好的倍率性能和出色的循环性能。更具体地说,纳米Li2S /碳纳米管纸电极在第4到第100周期以1C速率显示634 mAh g(-1)的可逆容量,容量保持率为92.4%,对应于0.078的低容量衰减率每个周期的百分比。这些结果证明了用于制造高性能纳米Li2S /碳纸电极的简便且可扩展的电极制造工艺,并且优异的性能使其有望与可充电Li-S电池中的无锂金属阳极一起用于实际应用。

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