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A High-Volumetric-Capacity Cathode Based on Interconnected Close-Packed N-Doped Porous Carbon Nanospheres for Long-Life Lithium–Sulfur Batteries

机译:基于互连紧密包装的N掺杂多孔碳纳米球的高容量阴极,用于长寿命锂硫电池

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摘要

This study reports a Li–S battery cathode of high volumetric capacity enabled by novel micro- and mesostructuring. The cathode is based on monodisperse highly porous carbon nanospheres derived from a facile template- and surfactant-free method. At the mesoscale, the nanospheres structure into interconnected close-packed clusters of a few microns in extent, thus facilitating the fabrication of dense crack-free high areal sulfur loading (5 mg cm−2) cathodes with high electrical conductivity and low cathode impedance. A combination of the nitrogen doping (5 wt%), high porosity (2.3 cm3 g−1), and surface area (2900 m2 g−1) at the microscale enables high sulfur immobilization and utilization. The cathode delivers among the best reported volumetric capacity to date, above typical Li-ion areal capacity at 0.2 C over 200 cycles and low capacity fading of 0.1% per cycle at 0.5 C over 500 cycles. The compact cathode structure also ensures a low electrolyte requirement (6 µL mg−1), which aids a low overall cell weight, and further, among the best gravimetric capacities published to date as well.
机译:这项研究报告了通过新颖的微结构和介观结构实现的高容量锂电池正极。阴极基于衍生自简便的无模板和表面活性剂方法的单分散高度多孔的碳纳米球。在中尺度上,纳米球结构成几个微米大小的相互连接的紧密堆积的簇,从而有利于制造具有高电导率和低阴极阻抗的致密,无裂纹的高面积硫负载(5 mg cm-2)阴极。微米级的氮掺杂(5 wt%),高孔隙率(2.3 cm3 g-1)和表面积(2900 m2 g-1)的组合实现了高硫的固定化和利用率。阴极提供了迄今为止最好的体积容量,超过了200个循环中0.2 C时典型的锂离子表面容量,以及500个循环中0.5 C时每周期0.1%的低容量衰减。紧凑的阴极结构还确保了较低的电解质需求(6 µL mg-1),这有助于降低电池的总重量,此外,它还具有迄今为止公布的最佳重量分析能力。

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