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Encapsulation of sulfur with thin-layered nickel-based hydroxides for long-cyclic lithium–sulfur cells

机译:长周期锂硫电池用薄层镍基氢氧化物包裹硫

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摘要

Elemental sulfur cathodes for lithium/sulfur cells are still in the stage of intensive research due to their unsatisfactory capacity retention and cyclability. The undesired capacity degradation upon cycling originates from gradual diffusion of lithium polysulfides out of the cathode region. To prevent losses of certain intermediate soluble species and extend lifespan of cells, the effective encapsulation of sulfur plays a critical role. Here we report an applicable way, by using thin-layered nickel-based hydroxide as a feasible and effective encapsulation material. In addition to being a durable physical barrier, such hydroxide thin films can irreversibly react with lithium to generate protective layers that combine good ionic permeability and abundant functional polar/hydrophilic groups, leading to drastic improvements in cell behaviours (almost 100% coulombic efficiency and negligible capacity decay within total 500 cycles). Our present encapsulation strategy and understanding of hydroxide working mechanisms may advance progress on the development of lithium/sulfur cells for practical use.
机译:用于锂/硫电池的元素硫阴极由于其容量保持率和可循环性不令人满意而仍处于深入研究阶段。循环时不希望的容量降低源自多硫化锂逐渐扩散出阴极区域。为了防止某些中间可溶性物质损失并延长细胞寿命,硫的有效包封起着至关重要的作用。在这里我们报告了一种可行的方法,通过使用薄层镍基氢氧化物作为可行和有效的封装材料。这种氢氧化物薄膜除了是一种持久的物理屏障外,还可以与锂发生不可逆的反应,生成保护层,这些保护层结合了良好的离子渗透性和丰富的极性/亲水基团,从而极大地改善了电池性能(几乎100%的库仑效率,可忽略不计)总共500个周期内的容量衰减)。我们目前的封装策略和对氢氧化物工作机理的理解可能会推动锂/硫电池在实际应用中的发展。

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