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A carbon sandwich electrode with graphene filling coated by N-doped porous carbon layers for lithium-sulfur batteries

机译:用于锂硫电池的N掺杂多孔碳层覆盖的石墨烯填充碳夹层电极

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摘要

A sheet-like carbon sandwich, which contains a graphene layer as the conductive filling with N-doped porous carbon layers uniformly coated on both sides, is designed as a novel sulfur reservoir for lithium-sulfur batteries and experimentally obtained by a hydrothermal process of a mixture of graphene oxide, glucose and pyrrole, followed by KOH activation. In the hydrothermal process, graphene oxide is both employed as the precursor for the central graphene filling and a sheet-like template for both-side formation of N-doped porous carbon layers, resulting in an N-doped carbon sandwich structure (N-CS). This carbon sandwich is about 50-70 nm in thickness and has a high specific surface area (similar to 2677 m(2) g(-1)) and a large pore volume (similar to 1.8 cm(3) g(-1)), making it a promising high capacity reservoir for sulfur and polysulfide in a lithium-sulfur cell. The sheet-like morphology and the interconnected pore structure of the N-CS, together with a nitrogen content of 2.2%, are transformed to the assembled N-CS/sulfur cell with a high rate performance and excellent cycling stability because of fast ion diffusion and electron transfer. At a 2C rate, the reversible capacity is up to 625 mA h g(-1) and remains at 461 mA h g(-1) after 200 cycles with only 0.13% capacity fading per cycle. More interestingly, the sheet-like structure helps the N-CS materials form a tightly stacked coating on an electrode sheet, guaranteeing a volumetric capacity as high as 350 mA h cm(-3).
机译:片状碳夹层被设计为一种新型的锂硫电池储硫剂,并通过水热法在碳纳米管上进行了实验,该片状碳夹层包含石墨烯层作为导电填充物,并且两侧均匀地覆盖了N掺杂的多孔碳层。氧化石墨烯,葡萄糖和吡咯的混合物,然后进行KOH活化。在水热工艺中,氧化石墨烯既用作中心石墨烯填充的前体,又用作片状模板用于双面形成N掺杂的多孔碳层,从而形成N掺杂的碳夹心结构(N-CS )。该碳夹心的厚度约为50-70 nm,具有高的比表面积(类似于2677 m(2)g(-1))和较大的孔体积(类似于1.8 cm(3)g(-1) ),使其成为锂硫电池中有希望的高容量硫和多硫化物储层。 N-CS的片状形态和相互连通的孔结构以及2.2%的氮含量由于离子快速扩散而转化为组装好的N-CS /硫电池,具有高倍率性能和出色的循环稳定性和电子转移。在2C速率下,可逆容量高达625 mA h g(-1),在200个循环后保持在461 mA h g(-1),每个循环仅衰减0.13%。更有趣的是,片状结构有助于N-CS材料在电极板上形成紧密堆叠的涂层,从而确保高达350 mA h cm(-3)的体积容量。

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