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具有稳定网络结构的海泡石/碳纳米管/硫@聚苯胺复合材料用于高性能锂硫电池。

Sepiolite/CNT/S@PANI composite with stable network structure for high performance lithium sulfur batteries.

作者信息

Yuan Guolong, Pan Junan, Zhang Yaguang, Yu Junxi, He Yanjia, Su Yong, Zhou Qi, Jin Hongyun, Xie Shuhong

机构信息

Hunan Provincial Key Laboratory of Thin Film Materials and Devices, Xiangtan University Xiangtan 411105 Hunan China.

State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals, Lanzhou University of Technology Lanzhou 730050 Gansu China.

出版信息

RSC Adv. 2018 May 16;8(32):17950-17957. doi: 10.1039/c8ra01925h. eCollection 2018 May 14.

Abstract

Composite materials with a stable network structure consisting of natural sepiolite (Sep) powders, carbon nanotubes (CNTs) and conductive polymer (PANI) have been successfully synthesized using a simple vacuum heat treatment and chemical oxidation method, and they have been used as cathode materials for lithium sulfur batteries. It is found that Sep/CNT/S@PANI composites possess high initial discharge capacity, good cyclic stability and good rate performance. The initial discharge capacity of the Sep/CNT/S@PANI-II composite is about 1100 mA h g at 2C, and remained at 650 mA h g after 300 cycles, and the corresponding coulombic efficiency is above 93%. Such performance is attributed to specific porous structure, outstanding adsorption characteristics, and excellent ion exchange capability of sepiolite, as well as excellent conductivity of CNT. Furthermore, the PANI coating has a pinning effect for sulfur, which enhances the utilization of the active mass and improves the cycling stability and the coulombic efficiency of the composites at high current rates.

摘要

通过简单的真空热处理和化学氧化法成功合成了由天然海泡石(Sep)粉末、碳纳米管(CNT)和导电聚合物(PANI)组成的具有稳定网络结构的复合材料,并将其用作锂硫电池的正极材料。研究发现,Sep/CNT/S@PANI复合材料具有较高的初始放电容量、良好的循环稳定性和倍率性能。Sep/CNT/S@PANI-II复合材料在2C时的初始放电容量约为1100 mA h g,300次循环后仍保持在650 mA h g,相应的库仑效率高于93%。这种性能归因于海泡石特定的多孔结构、出色的吸附特性和优异的离子交换能力,以及碳纳米管的优异导电性。此外,PANI涂层对硫具有钉扎效应,提高了活性物质的利用率,改善了复合材料在高电流密度下的循环稳定性和库仑效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/732c/9080492/c70f767f9c6f/c8ra01925h-f1.jpg

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