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Advanced Sulfur Cathode Enabled by Highly Crumpled Nitrogen-Doped Graphene Sheets for High-Energy-Density Lithium-Sulfur Batteries

机译:高能量密度锂 - 硫电池的高皱氮掺杂石墨烯片的先进硫磺阴极

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摘要

Herein, we report a synthesis of highly crumpled nitrogen doped graphene sheets with ultrahigh pore volume (5.4 cm(3)/g) via a simple thermally induced expansion strategy in absence of any templates. The wrinkled graphene sheets are interwoven rather than stacked, enabling rich nitrogen-containing active sites. Benefiting from the unique pore structure and nitrogen-doping induced strong polysulfide adsorption ability, lithium-sulfur battery cells using these wrinkled graphene sheets as both sulfur host and interlayer achieved a high capacity of similar to 1000 mAh/g and exceptional cycling stability even at high sulfur content (>= 80 wt %) and sulfur loading (5 mg sulfur/cm(2)). The high specific capacity together with the high sulfur loading push the areal capacity of sulfur cathodes to similar to 5 mAh/cm(2), which is outstanding compared to other recently developed sulfur cathodes and ideal for practical applications.
机译:在此,我们通过在没有任何模板的情况下,通过简单的热诱导的膨胀策略报告具有超高孔体积(5.4cm(3)/ g)的高皱氮掺杂石墨烯片的合成。 皱纹的石墨烯片被交织而不是堆叠,使含富含含氮活性位点。 受益于独特的孔结构和氮掺杂诱导的强多硫化物吸附能力,锂 - 硫电池电池使用这些皱纹的石墨烯片作为硫磺宿主和中间层的含量高容量与1000mAh / g的高容量和均匀的循环稳定性 硫含量(> = 80wt%)和硫载荷(5mg硫/ cm(2))。 高硫加载的高特定能力将硫阴极的面积容量推动到类似于5mAh / cm(2),与其他最近开发的硫阴极相比突出,非常适用于实际应用。

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