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A Bioinspired Functionalization of Polypropylene Separator for Lithium-Sulfur Battery

机译:锂硫电池聚丙烯隔板的生物启发功能化

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摘要

Lithium-sulfur batteries have received intensive attention, due to their high specific capacity, but the shuttle effect of soluble polysulfide results in a decrease in capacity. In response to this issue, we develop a novel tannic acid and Au nanoparticle functionalized separator. The tannic acid and gold nanoparticles were modified onto commercial polypropylene separator through a two-step solution process. Due to a large number of phenolic hydroxyl groups contained in the modified layer and the strong polarity of the gold nanoparticles, the soluble polysulfide generated during battery cycling is well stabilized on the cathode side, slowing down the capacity fade brought by the shuttle effect. In addition, the modification effectively improves the electrolyte affinity of the separator. As a result of these benefits, the novel separator exhibits improved battery performance compared to the pristine polypropylene separator.
机译:锂硫电池由于其高的比容量而受到了广泛的关注,但是可溶性多硫化物的穿梭效应导致容量下降。针对此问题,我们开发了一种新颖的单宁酸和金纳米颗粒功能化隔板。单宁酸和金纳米颗粒通过两步溶液法改性到商用聚丙烯隔膜上。由于改性层中包含大量的酚羟基和金纳米颗粒的强极性,在电池循环过程中产生的可溶性多硫化物在阴极侧得到了很好的稳定,从而减缓了穿梭效应带来的容量衰减。另外,该改性有效地改善了隔膜的电解质亲和力。由于这些益处,与原始聚丙烯隔板相比,新型隔板表现出改进的电池性能。

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