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A highly efficient double-hierarchical sulfur host for advanced lithium–sulfur batteries

机译:用于高级锂硫电池的高效双层硫磺主体

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Li–S batteries have attracted enormous interest due to their potentially high energy density, non-toxicity and the low cost of sulfur. The main challenges of sulfur cathodes are the short cycling life and limited power density caused by the low conductivity of sulfur and dissolution of Li polysulfides. Here we design a new double-hierarchical sulfur host to address these problems. Hierarchical carbon spheres (HCSs), constructed from building blocks of hollow carbon nanobubbles for loading sulfur, are sealed within a thin, polar MoS _(2) coating composed of ultrathin nanosheets. Experimental and theoretical studies show a strong absorption of the MoS _(2) nanoshell to polysulfides, and the excellent stability of the MoS _(2) nanosheets after the adsorption of polysulfides. Moreover, MoS _(2) promotes the electrochemical redox kinetics in Li–S batteries. Benefiting from the unique hierarchical, hollow and compositional characteristics of the host, the S/MoS _(2) @HCS composite electrode shows a high capacity of 1048 mA h g ~(?1) at 0.2C, good rate capacity and long cycling life with a slow capacity decay of 0.06% per cycle.
机译:由于其潜在的高能量密度,无毒和硫的低成本,Li-S电池引起了巨大的兴趣。硫阴极的主要挑战是由于硫的低导电性和Li多硫化物溶解引起的短循环寿命和有限的功率密度。在这里,我们设计了一个新的双层硫磺主机来解决这些问题。由用于装载硫的中空碳纳米波布布的构建块构成的分层碳球(HCS)密封在由超薄纳米片组成的薄,极性MOS _(2)涂层内。实验和理论研究表明,MOS _(2)纳米酚对多硫化物的强烈吸收,以及在吸附多硫化物之后MOS _(2)纳米液的优异稳定性。此外,MOS _(2)促进LI-S电池中的电化学氧化还原动力学。受益于主机的独特层次,空心和组成特性,S / MOS _(2)@HCS复合电极显示在0.2℃,良好的速度和长循环寿命中的高容量为1048 mA Hg〜(α1)每个周期的容量衰减速度为0.06%。

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