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Designable ultra-smooth ultra-thin solid-electrolyte interphases of three alkali metal anodes

机译:可设计的三个碱金属阳极超光滑超薄固体电解质中间相

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摘要

Dendrite growth of alkali metal anodes limited their lifetime for charge/discharge cycling. Here, we report near-perfect anodes of lithium, sodium, and potassium metals achieved by electrochemical polishing, which removes microscopic defects and creates ultra-smooth ultra-thin solid-electrolyte interphase layers at metal surfaces for providing a homogeneous environment. Precise characterizations by AFM force probing with corroborative in-depth XPS profile analysis reveal that the ultra-smooth ultra-thin solid-electrolyte interphase can be designed to have alternating inorganic-rich and organic-rich/mixed multi-layered structure, which offers mechanical property of coupled rigidity and elasticity. The polished metal anodes exhibit significantly enhanced cycling stability, specifically the lithium anodes can cycle for over 200 times at a real current density of 2 mA cm–2 with 100% depth of discharge. Our work illustrates that an ultra-smooth ultra-thin solid-electrolyte interphase may be robust enough to suppress dendrite growth and thus serve as an initial layer for further improved protection of alkali metal anodes.
机译:碱金属阳极的枝晶生长限制了它们在充电/放电循环中的寿命。在这里,我们报告了通过电化学抛光获得的锂,钠和钾金属的近乎完美的阳极,该阳极去除了微观缺陷并在金属表面形成了超光滑的超薄固体电解质中间相层,从而提供了均匀的环境。通过AFM力探测和证实性的深入XPS轮廓分析进行的精确表征显示,超光滑的超薄固体电解质中间相可以设计为具有交替的富无机和富有机/混合多层结构,从而提供机械性能刚度和弹性耦合的特性。抛光的金属阳极具有显着增强的循环稳定性,特别是锂阳极在2%mA cm -2 的实际电流密度下可放电200次以上,放电深度为100%。我们的工作表明,超光滑的超薄固体电解质中间相可能足够坚固,可以抑制树枝状晶体的生长,因此可以作为进一步改善碱金属阳极保护的初始层。

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