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Synthesis and Characterization of Li-C Nanocomposite for Easy and Safe Handling

机译:Li-C纳米复合材料的合成与表征便于安全处理

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摘要

Metallic lithium (Li) anode batteries have attracted considerable attention due to their high energy density value. However, metallic Li is highly reactive and flammable, which makes Li anode batteries difficult to develop. In this work, for the first time, we report the synthesis of metallic Li-embedded carbon nanocomposites for easy and safe handling by a scalable ion beam-based method. We found that vertically standing conical Li-C nanocomposite (Li-C NC), sometimes with a nanofiber on top, can be grown on a graphite foil commonly used for the anodes of lithium-ion batteries. Metallic Li embedded inside the carbon matrix was found to be highly stable under ambient conditions, making transmission electron microscopy (TEM) characterization possible without any sophisticated inert gas-based sample fabrication apparatus. The developed ion beam-based fabrication technique was also extendable to the synthesis of stable Li-C NC films under ambient conditions. In fact, no significant loss of crystallinity or change in morphology of the Li-C film was observed when subjected to heating at 300 °C for 10 min. Thus, these ion-induced Li-C nanocomposites are concluded to be interesting as electrode materials for future Li-air batteries.
机译:金属锂(​​Li)阳极电池由于其高能量密度值而引起了相当大的关注。然而,金属锂是高度反应性和易燃的,这使得李阳极电池难以发展。在这项工作中,我们首次报道了金属锂嵌入碳纳米复合材料的合成,以通过可伸缩的离子束的方法轻松安全地处理。我们发现垂直站立的锥形Li-C纳米复合材料(Li-C NC),有时在顶部含有纳米纤维,可以在通常用于锂离子电池的阳极的石墨箔上生长。在环境条件下发现嵌入碳基质内部的金属锂在环境条件下具有高度稳定的,使透射电子显微镜(TEM)表征在没有任何复杂的惰性气体基样品制造装置的情况下。发育的离子束制造技术也可在环境条件下合成稳定的Li-C NC膜。实际上,当在300℃下加热10分钟时,没有观察到Li-C膜的形态的显着损失或在Li-C膜的形态变化。因此,这些离子诱导的Li-C纳米复合材料得出结论是有趣的,作为未来Li-Air电池的电极材料。

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