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首页> 外文期刊>Angewandte Chemie >High Sulfur Content Material with Stable Cycling in Lithium-Sulfur Batteries
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High Sulfur Content Material with Stable Cycling in Lithium-Sulfur Batteries

机译:高硫含量材料,锂 - 硫磺电池稳定循环

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摘要

We demonstrate a novel crosslinked disulfide system as a cathode material for Li-S cells that is designed with the two criteria of having only a single point of S-S scission and maximizing the ratio of S-S to the electrochemically inactive framework. The material therefore maximizes theoretical capacity while inhibiting the formation of polysulfide intermediates that lead to parasitic shuttle. The material we report contains a 1:1 ratio of S:C with a theoretical capacity of 609 mAhg(-1). The cell gains capacity through 100 cycles and has 98% capacity retention thereafter through 200 cycles, demonstrating stable, long-term cycling. Raman spectroscopy confirms the proposed mechanism of disulfide bonds breaking to form a S-Li thiolate species upon discharge and reforming upon charge. Coulombic efficiencies near 100% for every cycle, suggesting the suppression of polysulfide shuttle through the molecular design.
机译:我们证明了一种新的交联二硫化物体系作为Li-S细胞的阴极材料,其设计有两个仅具有单点S-S侦察的标准并最大化S-S与电化学非活性框架的比率。 因此,该材料最大化理论能力,同时抑制导致寄生梭的多硫化物中间体的形成。 我们报告的材料含有1:1的S:C的比例,理论容量为609 mahg(-1)。 细胞增益通过100个循环的能力,然后通过200个循环具有98%的容量保持,展示稳定,长期循环。 拉曼光谱证实,在排出并重新加量时,将所提出的二硫键粘合机制破碎以形成S-Li硫醇盐物质。 每个循环的库仑效率接近100%,表明通过分子设计抑制多硫化物梭。

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