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Fully integrated hierarchical double-shelled Co9S8@CNT nanostructures with unprecedented performance for Li-S batteries

机译:完全集成的等级双壳二氧化碳CO9S8 @ CNT纳米结构,具有前所未有的LI-S电池性能

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摘要

The insulating and dissoluble features of sulfur and polysulfide intermediates significantly hinder the cycling performance and coulombic efficiency of Li-S batteries. We herein design fully integrated hierarchical double-shelled Co9S8@CNT hollow nanospheres as a sulfur host, where each shell owns a tri-layer sandwich structure and six functional layers are constructed in total. Uniquely, the hierarchical structures integrate the beneficial functions of electrical conductivity, ion diffusion, polysulfide immobilization and polysulfide redox kinetics. The Co9S8@CNT/S delivers a reversible specific capacity of 1415 mA h g(-1) at 0.2C, which is very close to the theoretical capacity of sulfur. Moreover, even at a high rate of 10C, an unprecedented capacity of 676.7 mA h g(-1) can still be achieved, which represents the best rate capability among the ever-reported sulfur cathodes with similar sulfur content. More importantly, the Co9S8@CNT/S also displays a high coulombic efficiency of nearly 100% and an excellent cycling performance for up to 1000 cycles with a capacity fading rate of only 0.0448% per cycle. Even at the loading amount of 5.5 mg cm(-2), the areal capacity can still reach 4.3 mA h cm(-2). The concept to rationally integrate distinct components into fully functional units could provide valuable insights for the development of Li-S batteries and beyond.
机译:硫和多硫化物中间体的绝缘和溶解特征显着阻碍了Li-S电池的循环性能和库仑效率。本文在本文中设计了完全集成的等级双壳CO9S8 @ CNT中空纳米球作为硫宿主,其中每个壳体拥有三层夹层结构,总共构建六个功能层。唯一的是,等级结构整合了导电性,离子扩散,多硫化物固定化和多硫化钠氧化还原动力学的有益功能。 CO9S8 @ CNT / S在0.2℃下提供1415 mA H(-1)的可逆特定容量,这非常接近硫的理论能力。此外,即使以高10℃的速率,仍然可以实现前所未有的676.7mA H G(-1)的容量,这代表了具有相似硫含量的已有报告的硫阴极中的最佳速率能力。更重要的是,CO9S8 @ CNT / s还显示出近100%的高库仑效率,高达1000个循环的优异循环性能,其容量衰落率仅为0.0448%。即使装载量为5.5mg cm(-2),也可以达到4.3 mA H cm(-2)。理性地将不同组件合理地集成到全功能单元的概念可以为LI-S电池和超越的发展提供有价值的见解。

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