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Synthesis of sulfur-co-polymer/porous long carbon nanotubes composite cathode by chemical and physical binding for high performance lithium-sulfur batteries

机译:化学和物理结合法合成高性能锂硫电池硫共聚物/多孔长碳纳米管复合阴极

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摘要

The composite cathode of sulfur-rich polymer and long cylindrical porous multiwalled carbon nanotubes (LCNT) is reported for high performance lithium-sulfur (Li-S) batteries through combining both chemical and physical binding strategies of sulfur, respectively. This technique efficiently exploits the synergistic effect of ability of stabilizing the polymeric sulfur. The role of uniform distribution of highly conductive LCNT network is optimized as a cathode host material by solution route. Annealed sulfur-co-polymer (S-co-poly) composites are homogeneously well attached via physisorption with LCNT submi-cron channel. The composite shows a high discharge capacity of 1040 mAh g_(-1) in the 1st cycle of gal-vanostatic charge-discharge at 0.5C. Whereas, the cell maintains a reversible capacity of 610 mAh g~(-1) after 200 cycles, showing good capacity rate. Therefore, solvent assisted both synthesis and further proper mixing enables high active material utilization whereas porous submicron channel of CNT network, which provides conducting pathway, adsorbs sulfur copolymer homogeneously for better electrochemical performance.
机译:据报道,通过结合硫的化学和物理结合策略,用于高性能锂硫(Li-S)电池的富硫聚合物和长圆柱多孔多壁碳纳米管(LCNT)的复合阴极。该技术有效地利用了稳定聚合硫的能力的协同作用。通过溶液路线优化了高导电性LCNT网络均匀分布的作用,作为阴极主体材料。退火后的硫磺共聚物(S-co-poly)复合材料通过与LCNT亚半通道的物理吸附而均匀地附着。该复合材料在0.5℃下的恒电流的第一循环中显示出1040mAh g _(-1)的高放电容量。而该电池在200次循环后保持610 mAh g〜(-1)的可逆容量,显示出良好的容量率。因此,溶剂辅助的合成和进一步的适当混合都可以提高活性物质的利用率,而提供导电路径的CNT网络的多孔亚微米通道可以均匀地吸附硫共聚物,从而获得更好的电化学性能。

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