首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Trapping sulfur in hierarchically porous, hollow indented carbon spheres: a high-performance cathode for lithium-sulfur batteries
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Trapping sulfur in hierarchically porous, hollow indented carbon spheres: a high-performance cathode for lithium-sulfur batteries

机译:将硫截留在多孔的空心凹陷碳球中:锂硫电池的高性能阴极

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摘要

Hierarchically porous hollow carbon spheres with an indented void structure have been designed as hosts for high-performance cathode materials for lithium-sulfur batteries. With a diameter of approximately 100 nm and a pore volume of 3.72 cm(3) g(-1), the hosts can retain sulfur within the porous structures, including the external cone-like cavities, the porous carbon shells, and the inner linings. The exquisite indented structure provides excellent electron and Li-ion pathways while the symmetrically indented voids evenly alleviate the stress induced by the volume change during cycling. The oxygen functional groups further relieve the shuttle effect of polysulfide. A composite electrode with 52% sulfur loading demonstrates a remarkable initial discharge capacity of 1478 mA h g(-1) at 1/10C (1C = 1675 mA g(-1)), corresponding to 88% sulfur utilization. Even when the sulfur/carbon (S/C) ratio of the composite is increased threefold from 1 : 1 to 3 : 1 (75% sulfur loading), a very high capacity retention is still maintained, achieving an ultraslow rate of capacity fading, similar to 0.047% per cycle over 1200 cycles at 1/2C.
机译:具有凹进的空隙结构的多层多孔空心碳球已被设计为锂硫电池高性能阴极材料的主体。具有大约100 nm的直径和3.72 cm(3)g(-1)的孔体积,主体可以将硫保留在多孔结构内,包括外部圆锥形腔体,多孔碳壳和内衬。精致的锯齿状结构提供了出色的电子和锂离子通道,而对称的锯齿状空隙均匀地缓解了循环过程中由于体积变化而产生的应力。氧官能团进一步减轻了多硫化物的穿梭作用。具有52%硫负载的复合电极在1 / 10C(1C = 1675 mA g(-1))时显示出显着的初始放电容量1478 mA h g(-1),相当于88%的硫利用率。即使复合材料的硫/碳(S / C)比从1:1增加到3:1(硫含量为75%)三倍时,仍然可以保持非常高的容量保持率,从而实现容量衰减的超慢速度,在1 / 2C下,在1200个循环中,每个循环的0.047%相似。

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