气凝胶
多硫化物
分离器(采油)
石墨烯
阳极
阴极
材料科学
硫黄
化学工程
电极
纳米技术
化学
电解质
冶金
热力学
物理
工程类
物理化学
作者
Shunyuan Tan,Yimin A. Wu,Shuting Kan,Manman Bu,Yang Liu,Lishan Yang,Hao Jiang,Hongtao Liu
标识
DOI:10.1016/j.electacta.2020.136173
摘要
The shuttle effect of dissoluble sulfurous intermediates is the bottleneck in developing durable Li–S batteries. It is crucial to confine sulfurous species in cathodic chamber for utmost suppression of the polysulfide shuttle. Herein, a dual-trapping policy is formulated to solve the issue. The MnO2-decorated graphene aerogel (MG) is applied to modify the Celgard separator, and the I/N codoped graphene aerogel (ING) is prepared as the cathode sulfur host. Both the [email protected] separator and the ING/S cathode could efficiently capture polysulfides and promote the utilization of active sulfur. As a consequence, the tailored Li–S cell with the [email protected]+ING/S combination shows durable cycle stability in addition to high initial capacity as well as capacity retention. The used electrodes and the separator are all in good conditions after 200 cycles, and no shuttled sulfurous species can be observed on the anode. Therefore, it is hopeful to impulse Li–S battery engineering by optimizing such a dual-trapping policy.
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