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Mesoporous carbon with large pore volume and high surface area prepared by a co-assembling route for Lithium-Sulfur Batteries

机译:锂硫电池共组装法制备的大孔高表面积介孔碳

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摘要

Mesoporous carbon (MC) materials with large pore volume and high surface area have been synthesized as the conductive matrix in the sulfur cathode for the lithium sulfur (Li/S) batteries using a simultaneous templating and carbonization method. The magnesium citrate is used as the precursor of the carbon and provides nanometer sized MgO particles template. Wide-angle X-ray diffraction (WA-XRD), high-resolution transmission electron microscopy (HR-TEM) and N_2 sorption analysis show that the resultant carbon material possesses mesopores structure (about 6.5 nm), high surface area (1432 m~2 g~(-1)), and large pore volumes (2.894 cm~3 g~(-1)) after pyrolysis (1000℃). Elemental maps confirm that sulfur is homogeneously dispersed in the MC framework after encapsulation. Electrochemical measurements performed on this mesoporous carbon used as an electrode material for Li/S batteries show excellent discharge capacity (1083.6 mAh g~(-1)) at current density 200 mAg~(-1). The mesopores with large volume and high surface area are crucial in loading insulated sulfur, which provide enough space and good conducting networks for active materials. Meanwhile, mesoporous structure with high adsorption capacity can both effectively accommodate the polysulfide anions and improve the electrochemical performance of Li/S batteries.
机译:使用同时模板化和碳化方法,已经合成了具有大孔体积和高表面积的中孔碳(MC)材料作为锂硫(Li / S)电池的硫阴极中的导电基质。柠檬酸镁用作碳的前体,并提供纳米级的MgO颗粒模板。广角X射线衍射(WA-XRD),高分辨率透射电子显微镜(HR-TEM)和N_2吸附分析表明,所得碳材料具有介孔结构(约6.5 nm),高表面积(1432 m〜)。 2 g〜(-1)),热解(1000℃)后大孔容(2.894 cm〜3 g〜(-1))。元素图证实了硫在包封后均匀地分散在MC骨架中。在用作Li / S电池电极材料的这种介孔碳上进行的电化学测量显示,在电流密度为200 mAg〜(-1)时,放电容量极佳(1083.6 mAh g〜(-1))。大体积和高表面积的中孔对于负载绝缘硫至关重要,硫为活性材料提供了足够的空间和良好的导电网络。同时,具有高吸附能力的中孔结构既可以有效地容纳多硫化物阴离子,又可以提高Li / S电池的电化学性能。

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