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Graphene/carbon aerogel for high areal capacity sulfur cathode of Li-S batteries

机译:石墨烯/碳气凝块用于LI-S电池的高面积容量硫阴极

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摘要

Lithium-sulfur batteries are promising high-energy-density devices for next-generation energy storage systems. One of the most challenging issues impeding their practical application is how to develop cost-effective thick sulfur cathode with fast kinetics. Carbon aerogels (CAs) show great potential as host for lithium-sulfur batteries, while the preparation of CAs usually requires special time-consuming drying techniques to retain their porous structure. In this work, we develop a facile method to tailor the flexible structure of the CAs by simply using NaCl, leading to a more stable porous structure that resists the collapse of pores during conventional drying process. High gravimetric and areal sulfur loading can be realized in the synthesized hierarchically porous carbon aerogel electrode. With 69 wt% and over 6 mg cm(-2) sulfur loading on the cathode, the cell delivers an initial capacity of 1121 mA h g(-1) and a reversible capacity of 797 mA h g(-1) after 100 cycles under the current density of 0.2 C.
机译:锂 - 硫磺电池是下一代储能系统的高能密度装置。阻碍其实际应用的最具挑战性问题之一是如何开发具有快速动力学的经济效益的厚硫阴极。碳气凝胶(CAS)显示锂硫电池的宿主潜力很大,而CA的制备通常需要特殊的耗时的干燥技术来保留其多孔结构。在这项工作中,我们通过简单地使用NaCl,开发一种容易测量CAS的柔性结构,导致更稳定的多孔结构,可在传统的干燥过程中抵抗孔的塌陷。高重量和区域硫载荷可以在合成的分层多孔碳气体电极中实现。在阴极上含有69wt%和超过6mg cm(-2)硫加载,电池在100次循环之后提供1121 mA Hg(-1)的初始容量,可逆容量为797 mA hg(-1)电流密度为0.2℃。

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