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多孔石墨碳负载超高硫作为可充电锂硫电池的高性能正极。

Porous graphitic carbon loading ultra high sulfur as high-performance cathode of rechargeable lithium-sulfur batteries.

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University , Xiamen 361005, China.

出版信息

ACS Appl Mater Interfaces. 2013 Nov 13;5(21):10782-93. doi: 10.1021/am402970x. Epub 2013 Oct 18.

Abstract

Porous graphitic carbon of high specific surface area of 1416 m(2) g(-1) and high pore volume of 1.11 cm(3) g(-1) is prepared by using commercial CaCO3 nanoparticles as template and sucrose as carbon source followed by 1200 °C high-temperature calcination. Sulfur/porous graphitic carbon composites with ultra high sulfur loading of 88.9 wt % (88.9%S/PC) and lower sulfur loading of 60.8 wt % (60.8%S/PC) are both synthesized by a simple melt-diffusion strategy, and served as cathode of rechargeable lithium-sulfur batteries. In comparison with the 60.8%S/PC, the 88.9%S/PC exhibits higher overall discharge capacity of 649.4 mAh g(-1)(S-C), higher capacity retention of 84.6% and better coulombic efficiency of 97.4% after 50 cycles at a rate of 0.1C, which benefits from its remarkable specific capacity with such a high sulfur loading. Moreover, by using BP2000 to replace the conventional acetylene black conductive agent, the 88.9% S/PC can further improve its overall discharge capacity and high rate property. At a high rate of 4C, it can still deliver an overall discharge capacity of 387.2 mAh g(-1)(S-C). The porous structure, high specific surface area, high pore volume and high electronic conductivity that is originated from increased graphitization of the porous graphitic carbon can provide stable electronic and ionic transfer channel for sulfur/porous graphitic carbon composite with ultra high sulfur loading, and are ascribed to the excellent electrochemical performance of the 88.9%S/PC.

摘要

一种比表面积为 1416 m(2) g(-1)、孔体积为 1.11 cm(3) g(-1)的高比表面积、高孔体积的多孔石墨碳是通过使用商业 CaCO3 纳米粒子作为模板和蔗糖作为碳源,然后在 1200°C 高温下煅烧制备的。采用简单的熔融扩散策略,合成了超高硫载量(88.9%S/PC)和较低硫载量(60.8%S/PC)的硫/多孔石墨碳复合材料,并将其用作可充电锂硫电池的正极。与 60.8%S/PC 相比,88.9%S/PC 在 0.1C 倍率下循环 50 次后具有更高的总放电容量 649.4 mAh g(-1)(S-C)、84.6%的容量保持率和 97.4%的库仑效率,这得益于其在如此高的硫载量下具有显著的比容量。此外,通过使用 BP2000 替代传统的乙炔黑导电剂,88.9%S/PC 可以进一步提高其总放电容量和倍率性能。在 4C 的高倍率下,它仍能提供 387.2 mAh g(-1)(S-C)的总放电容量。多孔石墨碳的高比表面积、高孔体积和高电子电导率源于其石墨化程度的提高,为超高硫载量的硫/多孔石墨碳复合材料提供了稳定的电子和离子传输通道,这归因于 88.9%S/PC 的优异电化学性能。

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