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Preparation and lithium storage properties of active carbon-CNT/sulfur composite

机译:活性炭-CNT /硫复合材料的制备及储锂性能

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摘要

Activated carbon was prepared with active carbon and carbon nanotubes (CNTs) as carriers of sulfur lithium-sulfur battery anode. The preparation was performed by sealing and heating molten lithium-sulfur batteries with different ratios of CNT, which was the positive active material. X-ray diffraction (XRD) pattern showed that composite material had more amorphous structure; the sample of C/CNT ratio of 3:1 exhibited the strongest amorphous, indicating that elemental sulfur was scattered into the pores of the carbon materials. Scanning electron microscopy showed that CNT was evenly dispersed into the activated carbon/sulfur composite materials in the anode material, forming a 3D conductive structure. The discharge specific capacity of the composite test exhibited that a small amount of CNT improved the discharge specific capacity of the anode material to active material for the preparation of activated carbon. The discharge specific capacity of CNT with 2:2 ratio was up to 1371.1 mAh/g. After the first 50 cycles, the discharge specific capacity could be stabilized at 687.3 mAh/g.
机译:用活性炭和碳纳米管(CNTs)作为硫磺锂硫电池阳极的载体制备了活性炭。通过密封和加热具有不同比例的作为正极活性物质的CNT的熔融锂硫电池进行制备。 X射线衍射图谱表明复合材料具有更多的非晶结构。 C / CNT比为3:1的样品表现出最强的非晶态,表明元素硫散布在碳材料的孔中。扫描电子显微镜显示,CNT均匀地分散到阳极材料中的活性炭/硫复合材料中,形成3D导电结构。复合试验的放电比容量显示出少量的CNT改善了负极材料对用于制备活性炭的活性材料的放电比容量。比例为2:2的CNT的放电比容量高达1371.1 mAh / g。在前50个循环后,放电比容量可以稳定在687.3 mAh / g。

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