石墨烯
材料科学
硫黄
阴极
纳米技术
电化学
锂(药物)
电极
纳米颗粒
化学工程
多孔性
功率密度
化学
复合材料
功率(物理)
医学
物理
工程类
内分泌学
物理化学
量子力学
冶金
作者
Bin Li,Songmei Li,Jianhua Liu,Bo Wang,Shubin Yang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2015-04-10
卷期号:15 (5): 3073-3079
被引量:187
标识
DOI:10.1021/acs.nanolett.5b00064
摘要
Although lithium-sulfur batteries have gained great interest owing to their high energy density, they lack suitable electrodes capable of rapid charging and discharging to enable a high power density critical for wide applications. Here, we demonstrate a simply electrochemical assembly strategy to achieve vertically aligned sulfur-graphene (S-G) nanowall onto electrically conductive substrates. Remarkably, in each individual S-G nanowalls, sulfur nanoparticles are homogeneously anchored in between of graphene layers and ordered graphene arrays arrange perpendicularly to the substrates, which are favorable for the fast diffusions of both lithium and electron. Moreover, the hierarchical and porous structures facilate the effective accommodation of the volume change of sulfur. As a consequence, a high reversible capacity of 1261 mAh g(-1) in the first cycle and over 1210 mAh g(-1) after 120 cycles with excellent cyclability and high-rate performance (over 400 mAh g(-1) at 8C, 13.36 A g(-1)) are achieved with these S-G nanowalls as cathodes for lithium-sulfur batteries, providing the best reported rate performance for sulfur-graphene cathodes to date.
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