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Dual confinement of sulphur with rGO-wrapped microporous carbon from β-cyclodextrin nanosponges as a cathode material for Li-S batteries

机译:β-环糊精纳米海绵中的rGO包裹的微孔碳对锂进行双重限制,作为Li-S电池的正极材料

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摘要

A novel approach is developed to synthesize microporous carbon spheres with pore size ranges from 5 to 11 Å from hyper-cross-linked polymer β-cyclodextrin. Sulphur is incorporated in the micropores by solution impregnation followed by melt infusion. The resultant carbon sulphur (C/S) composite is wrapped in reduced graphene oxide (rGO) to provide conductive pathways to access the sulphur in micropores and to protect the surface-adhered sulphur. The cathode material obtained from rGO wrapping delivers initial discharge capacity of 1103 mA h g−1 at 0.1 C, maintaining a capacity of 626 mA h g−1 at 0.2 C with capacity loss of 0.2% per cycle for more than 100 cycles. In another cell configuration using carbon paper as an interlayer, discharge capacity has raised to 850 mA h g−1 at 0.2 C and maintained 86% of its capacity for 100 cycles with excellent rate capability and high Coulombic efficiency. The good performance may be referred to excellent conductive networks, porous architecture of carbon spheres and adsorption of catholyte by fibrous interlayer that can effectively reduce the polysulfide shuttling.
机译:开发了一种新颖的方法,可以由超交联聚合物β-环糊精合成孔径为5至11Å的微孔碳球。通过溶液浸渍然后熔体注入将硫掺入微孔中。将所得的碳硫(C / S)复合材料包裹在还原的氧化石墨烯(rGO)中,以提供导电途径以微孔进入硫并保护表面附着的硫。通过rGO包裹获得的正极材料在0.1 C时的初始放电容量为1103 mA h g-1,在0.2 C时保持626 mA h g-1的容量,每循环100%的容量损耗为0.2%。在使用复写纸作为中间层的另一种电池配置中,放电容量在0.2 C时已提高至850 mA h g-1,并在100次循环中保持了86%的容量,并具有出色的倍率性能和高库仑效率。良好的性能可以被称为出色的导电网络,碳球的多孔结构以及纤维状中间层对阴极电解液的吸附,可以有效地减少多硫化物的穿梭。

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