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首页> 外文期刊>ACS applied materials & interfaces >Bifunctional Binder with Nucleophilic Lithium Polysulfide Immobilization Ability for High-Loading, High-Thickness Cathodes in Lithium-Sulfur Batteries
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Bifunctional Binder with Nucleophilic Lithium Polysulfide Immobilization Ability for High-Loading, High-Thickness Cathodes in Lithium-Sulfur Batteries

机译:双官能粘合剂具有亲核锂多硫化物固定能力,用于锂 - 硫电池中的高负荷,高厚度阴极

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摘要

Lithium-sulfur batteries remain a promising next-generation renewable energy storage device due to their high theoretical energy density over the current commercial lithium-ion battery technology. However, to have any practical viability toward reaching the theoretical value, high-loading cathodes with sufficient sulfur content and specifically the effect of nonconductive binders must be investigated. We consider the limitations of conventional binders for high-loading, high-thickness cathodes by integrating a bifunctional binder with a linear polyethylene chain and maleate-capped ends. The linear polymer allows for flexibility within the high-loading cathode whereas the maleate ends improve the polysulfide trapping ability with carbon-sulfur binding. With the strong polysulfide immobilization ability due to the nucleophilic binding, the binder achieves high sulfur loadings of 12 mg cm(-2) with a high sulfur content of 80 wt %. The work serves as a proof of concept for exploring the incorporation of polymeric materials into sulfur cathodes to realize practical viability.
机译:锂 - 硫磺电池仍然是下一代可再生能量存储装置,因为它们对当前商业锂离子电池技术的高理论能量密度。然而,为了达到理论值的任何实际可行性,必须研究具有足够硫含量的高负载阴极,特别是必须研究非导电粘合剂的效果。我们考虑通过将双官能粘合剂与线性聚乙烯链与线性聚乙烯链和马来酸盖末端整合的常规粘合剂对高负荷的高厚度阴极的局限性。线性聚合物允许在高负载阴极内的柔韧性,而马来亚酸酯结束具有碳 - 硫结合的多硫化物捕获能力。由于核细核结合引起的强多硫化物固定能力,粘合剂可实现12mg cm(-2)的高硫载体,高硫含量为80wt%。该作品用作探索聚合物材料掺入硫阴极以实现实际活力的概念证明。

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