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High sulfur-containing carbon polysulfide polymer as a novel cathode material for lithium-sulfur battery

机译:高含硫多硫化碳聚合物作为锂硫电池的新型正极材料

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摘要

The lithium-sulfur battery, which offers a high energy density and is environmental friendly, is a promising next generation of rechargeable energy storage system. However, despite these attractive attributes, the commercialization of lithium-sulfur battery is primarily hindered by the parasitic reactions between the Li metal anode and dissolved polysulfide species from the cathode during the cycling process. Herein, we synthesize the sulfur-rich carbon polysulfide polymer and demonstrate that it is a promising cathode material for high performance lithium-sulfur battery. The electrochemical studies reveal that the carbon polysulfide polymer exhibits superb reversibility and cycle stability. This is due to that the well-designed structure of the carbon polysulfide polymer has several advantages, especially, the strong chemical interaction between sulfur and the carbon framework (C-S bonds) inhibits the shuttle effect and the π electrons of the carbon polysulfide compound enhance the transfer of electrons and Li+. Furthermore, as-prepared carbon polysulfide polymer-graphene hybrid cathode achieves outstanding cycle stability and relatively high capacity. This work highlights the potential promise of the carbon polysulfide polymer as the cathode material for high performance lithium-sulfur battery.
机译:锂硫电池具有高能量密度并且对环境友好,是有前途的下一代可充电储能系统。然而,尽管具有这些吸引人的属性,但锂-硫电池的商业化主要受到锂金属阳极与循环过程中来自阴极的溶解的多硫化物物质之间的寄生反应的阻碍。本文中,我们合成了富硫的多硫化碳聚合物,并证明它是用于高性能锂硫电池的有希望的正极材料。电化学研究表明,多硫化碳聚合物表现出极好的可逆性和循环稳定性。这是由于精心设计的多硫化碳聚合物结构具有多个优点,尤其是硫与碳骨架(CS键)之间的强化学相互作用抑制了穿梭效应,并且多硫化碳化合物的π电子增强了电子和Li + 的转移此外,所制备的多硫化碳聚合物-石墨烯杂化阴极实现了优异的循环稳定性和相对较高的容量。这项工作凸显了多硫化碳聚合物作为高性能锂硫电池正极材料的潜在前景。

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