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首页> 外文期刊>Nano letters >Freeze-Dried Sulfur-Graphene Oxide-Carbon Nanotube Nanocomposite for High Sulfur-Loading Lithium/Sulfur Cells
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Freeze-Dried Sulfur-Graphene Oxide-Carbon Nanotube Nanocomposite for High Sulfur-Loading Lithium/Sulfur Cells

机译:用于高硫加载锂/硫细胞的冷冻干燥硫 - 石墨烯氧化碳 - 纳米管纳米复合材料

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摘要

The ambient-temperature rechargeable lithium/sulfur (Li/S) cell is a strong candidate for the beyond lithium ion cell since significant progress on developing advanced sulfur electrodes with high sulfur loading has been made. Here we report on a new sulfur electrode active material consisting of a cetyltrimethylammonium bromide-modified sulfur-graphene oxide-carbon nanotube (S-GO-CTA-CNT) nanocomposite prepared by freeze-drying. We show the real-time formation of nanocrystalline lithium sulfide (Li2S) at the interface between the S-GO-CTA-CNT nanocomposite and the liquid electrolyte by in situ TEM observation of the reaction. The combination of GO and CNT helps to maintain the structural integrity of the S-GO-CTA-CNT nanocomposite during lithiation/delithiation. A high S loading (11.1 mgS/cm(2), 75% S) S-GO-CTA-CNT electrode was successfully prepared using a three-dimensional structured A1 foam as a substrate and showed good S utilization (1128 mAh/g S corresponding to 12.5 mAh/cm(2)), even with a very low electrolyte to sulfur weight ratio of 4. Moreover, it was demonstrated that the ionic liquid in the electrolyte improves the Coulombic efficiency and stabilizes the morphology of the Li metal anode.
机译:环境温度可再充电锂/硫(Li / S)细胞是超越锂离子电池的强烈候选者,因为已经进行了高硫载荷的高级硫电极的显着进展。在这里,我们报道了通过冷冻干燥制备的甲酰基三甲基溴化铵改性硫 - 石墨烯氧化物 - 纳米纳米管(S-GO-CTA-CNT)纳米核化学物质组成的新的硫电极活性材料。我们通过原位TEM观察反应显示在S-Go-CTA-CNT纳米复合材料和液体电解质之间的界面处的纳米晶锂硫化物(Li2S)的实时形成。 Go和CNT的组合有助于在锂化/脱节期间保持S-Go-CTA-CNT纳米复合材料的结构完整性。使用三维结构A1泡沫作为基材成功制备了高载荷(11.1mgs / cm(2),75%S)S-Go-CTA-CNT电极,并显示出良好的利用率(1128mAh / g s对应于12.5mAh / cm(2)),即使具有非常低的电解质至硫比为4.此外,还证明了电解质中的离子液体提高了库仑效率并稳定了Li金属阳极的形态。

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