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Biomass Waste Inspired Highly Porous Carbon for High Performance Lithium/Sulfur Batteries

机译:生物质废物启发了用于高性能锂/硫电池的高多孔碳

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摘要

The synthesis of highly porous carbon (HPC) materials from poplar catkin by KOH chemical activation and hydrothermal carbonization as a conductive additive to a lithium-sulfur cathode is reported. Elemental sulfur was composited with as-prepared HPC through a melt diffusion method to form a S/HPC nanocomposite. Structure and morphology characterization revealed a hierarchically sponge-like structure of HPC with high pore volume (0.62 cm3∙g−1) and large specific surface area (1261.7 m2∙g−1). When tested in Li/S batteries, the resulting compound demonstrated excellent cycling stability, delivering a second-specific capacity of 1154 mAh∙g−1 as well as presenting 74% retention of value after 100 cycles at 0.1 C. Therefore, the porous structure of HPC plays an important role in enhancing electrochemical properties, which provides conditions for effective charge transfer and effective trapping of soluble polysulfide intermediates, and remarkably improves the electrochemical performance of S/HPC composite cathodes.
机译:据报道,通过KOH化学活化和水热碳化,从杨树柳絮中合成高度多孔的碳(HPC)材料,作为锂硫阴极的导电添加剂。通过熔融扩散法将元素硫与制备的HPC复合,形成S / HPC纳米复合材料。结构和形态表征表明,HPC具有分层海绵状结构,具有高孔隙体积(0.62 cm 3 ∙g -1 )和大比表面积(1261.7 m 2 ∙g −1 )。当在Li / S电池中进行测试时,所得化合物表现出出色的循环稳定性,可提供1154 mAh∙g -1 的第二比容量,并在0.1的100次循环后保持74%的值保持因此,HPC的多孔结构在增强电化学性能方面起着重要作用,为有效的电荷转移和有效捕获可溶性多硫化物中间体提供了条件,并显着提高了S / HPC复合阴极的电化学性能。

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