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Sulfur-Impregnated Core-Shell Hierarchical Porous Carbon for Lithium-Sulfur Batteries

机译:锂硫电池用硫浸渍的核壳层级多孔碳

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Core-shell hierarchical porous carbon spheres (HPCs) were synthesized by a facile hydrothermal method and used as host to incorporate sulfur. The microstructure, morphology, and specific surface areas of the resultant samples have been systematically characterized. The results indicate that most of sulfur is well dispersed over the core area of HPCs after the impregnation of sulfur. Meanwhile, the shell of HPCs with void pores is serving as a retard against the dissolution of lithium polysulfides. This structure can enhance the transport of electron and lithium ions as well as alleviate the stress caused by volume change during the charge-discharge process. The as-prepared HPC-sulfur (HPC-S) composite with 65.3 wt% sulfur delivers a high specific capacity of 1397.9 mAhg(-1) at a current density of 335 mAg(-1) (0.2 C) as a cathode material for lithium-sulfur (Li-S) batteries, and the discharge capacity of the electrode could still reach 753.2 mAhg(-1) at 6700 mAg(-1) (4C). Moreover, the composite electrode exhibited an excellent cycling capacity of 830.5 mAhg(-1) after 200 cycles.
机译:通过简便的水热法合成了核-壳层级多孔碳球(HPC),并用作掺入硫的主体。系统地表征了所得样品的微观结构,形态和比表面积。结果表明,在硫磺浸渍后,大部分硫磺充分分散在HPC的核心区域上。同时,具有孔隙的HPC壳阻碍了多硫化锂的溶解。这种结构可以增强电子和锂离子的传输,并减轻充放电过程中由于体积变化而引起的应力。制备的具有65.3 wt%硫的HPC硫(HPC-S)复合材料在335 mAg(-1)(0.2 C)的电流密度下可提供1397.9 mAhg(-1)的高比容量作为阴极材料锂硫(Li-S)电池,在6700 mAg(-1)(4C)时,电极的放电容量仍可达到753.2 mAhg(-1)。此外,复合电极在200次循环后显示出830.5 mAhg(-1)的出色循环容量。

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