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High-performance graphene/sulphur electrodes for flexible Li-ion batteries using the low-temperature spraying method

机译:高性能石墨烯/硫电极灵活使用的锂离子电池低温喷雾法

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摘要

Elementary sulphur (S) has been shown to be an excellent cathode material in energy storage devices such as Li-S batteries owing to its very high capacity. The major challenges associated with the sulphur cathodes are structural degradation, poor cycling performance and instability of the solid-electrolyte interphase caused by the dissolution of polysulfides during cycling. Tremendous efforts made by others have demonstrated that encapsulation of S materials improves their cycling performance. To make this approach practical for large scale applications, the use of low-cost technology and materials has become a crucial and new focus of S-based Li-ion batteries. Herein, we propose to use a low temperature spraying process to fabricate graphene/S electrode material, where the ink is composed of graphene flakes and the micron-sized S particles prepared by grinding of low-cost S powders. The S particles are found to be well hosted by highly conductive graphene flakes and consequently superior cyclability (similar to 70% capacity retention after 250 cycles), good coulombic efficiency (similar to 98%) and high capacity (similar to 1500 mA h g(-1)) are obtained. The proposed approach does not require high temperature annealing or baking; hence, another great advantage is to make flexible Li-ion batteries. We have also demonstrated two types of flexible batteries using sprayed graphene/S electrodes.
机译:小学硫(S)已被证明是一个优秀的阴极材料在储能设备(如Li-S电池由于其非常高容量。与硫阴极是结构性的退化,可怜的循环性能和固体电解质界面的不稳定由聚硫化物的溶解引起的骑自行车。证明了S的封装材料提高循环性能。方法实用的大规模应用,使用低成本的技术和材料成为一个至关重要的和新的s锂离子的焦点电池。温度喷涂过程来制造石墨烯/ S电极材料,油墨在哪里由石墨烯片和微米大小的粒子由磨低成本的年代粉末。由高导电石墨烯片因此上级cyclability(类似于70%能力保留在250周期),很好库仑效率(类似于98%)和高能力(类似于1500 mA h g (1))获得的。高温退火或烘烤;另一个很大的优势是灵活的锂离子电池。类型的灵活使用喷涂电池石墨烯/ S电极。

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