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Novel Hierarchically Porous Carbon Materials Obtained from Natural Biopolymer as Host Matrixes for Lithium-Sulfur Battery Applications

机译:从天然生物聚合物中获得的新型分层多孔碳材料,作为锂硫电池应用的主体基质

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摘要

Novel hierarchically porous carbon materials with very high surface areas, large pore volumes and high electron conductivities were prepared from silk cocoon by carbonization with KOH activation. The prepared novel porous carbon-encapsulated sulfur composites were fabricated by a simple melting process and used as cathodes for lithium sulfur batteries. Because of the large surface area and hierarchically porous structure of the carbon material, soluble polysulfide intermediates can be trapped within the cathode and the volume expansion can be alleviated effectively. Moreover, the electron transport properties of the carbon materials can provide an electron conductive network and promote the utilization rate of sulfur in cathode. The prepared carbon—sulfur composite exhibited a high specific capacity and excellent cycle stability. The results show a high initial discharge capacity of 1443 mAh g~(-1) and retain 804 mAh g~(-1) after 80 discharge/charge cycles at a rate of 0.5 C. A Coulombic efficiency retained up to 92% after 80 cycles. The prepared hierarchically porous carbon materials were proven to be an effective host matrix for sulfur encapsulation to improve the sulfur utilization rate and restrain the dissolution of polysulfides into lithium-sulfur battery electrolytes.
机译:通过用KOH活化进行碳化的茧丝,制备了具有很高表面积,大孔体积和高电子电导率的新型分层多孔碳材料。通过简单的熔融工艺制备了制备的新型多孔碳包硫复合材料,并将其用作锂硫电池的正极。由于碳材料的大表面积和分层多孔结构,可将可溶性多硫化物中间体截留在阴极内,并且可以有效地缓解体积膨胀。此外,碳材料的电子传输性质可提供电子导电网络并提高阴极中硫的利用率。制备的碳硫复合材料具有较高的比容量和优异的循环稳定性。结果表明,初始放电容量高达1443 mAh g〜(-1),在以0.5 C的速率进行80次放电/充电后,仍可保持804 mAh g〜(-1)。库仑效率在80次后可保持高达92%周期。所制备的分层多孔碳材料被证明是有效的硫包封基质,可以提高硫的利用率并抑制多硫化物溶解在锂硫电池电解质中。

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