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Mesoporous N-doped graphene prepared by a soft-template method with high performance in Li-S batteries

机译:介孔由一个n型石墨烯极富方法与高性能Li-S电池

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Lithium sulfur (Li-S) batteries, which have high theoretical capacity, are promising candidates for energy storage systems; however, several obstacles, including insulating nature and volumetric expansion of sulfur as well as shuttle effects of polysulfides, impede the commercialization of these batteries. Herein, we utilized mesoporous N-doped graphene (NGM) as a sulfur host, which was synthesized using a type of triblock copolymer, Pluronic F127 (PF127), as a soft template. PF127 not only acted as a spacer to prevent the graphene layers from restacking during the hydrothermal reaction, but also resulted in the formation of high-density wrinkles on the surface of the graphene sheets after annealing. The crumpled NGM with a nitrogen doping content of 4.80 at% had the high specific area and total pore volume of up to 958.72 m(2) g(-1) and 2.39 cm(3) g(-1), respectively, providing space for the accommodation and uniform distribution of sulfur in the cathode. Therefore, the sulfur content was increased to 87.2 wt% in the graphene sulfur composite, achieving the discharge capacity of 492.2 mA h g(TE)(-1) at 1.08 A g(TE)(-1) with a low capacity decay rate of 0.12% per cycle after 400 cycles. Thus, this study provides an effective strategy for enhancing the specific surface area and pore volume of graphene to develop Li-S batteries with high performance.
机译:锂硫电池(Li-S),高理论能力,是有希望的候选人能源存储系统;障碍,包括绝缘性质和体积膨胀硫以及航天飞机聚硫的影响,阻碍了这些电池的商业化。利用介孔n型石墨烯(NGM)合成了硫主机,使用一个类型普朗尼克的triblock共聚物F127 (PF127)软模板。防止石墨烯层放置在热液反应,但也导致高密度的形成皱纹表面的石墨烯在退火之后。掺杂高4.80在%的具体内容面积和总孔隙体积的958.72米(2)g(1)和(3)g(1) 2.39厘米,分别提供住宿和统一的空间在阴极硫的分布。含硫量的增加到87.2 wt %石墨烯硫复合,实现放电容量492.2 mA h g (TE) (1)1.08 g (TE)(1)与低容量衰减率400年后0.12%的循环周期。研究提供了一种有效的策略提高比表面积和孔隙石墨烯发展Li-S电池的体积高性能。

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