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Hydrogen storage in a chemical bond stabilized Co9S8-graphene layered structure

机译:在化学键稳定储氢Co9S8-graphene分层结构

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摘要

With the high energy ball milling method, a Co9S8-decorated reduced graphene oxide (RGO) composite, which shows excellent hydrogen storage capacity, has been successfully fabricated with a well-organized layered structure. Moreover, the stabilized mechanism of the well-organized layered structure is investigated and attributed to the strong interactions between Co9S8 and defective RGO. The C-S bond interaction is identified and the hydrogen storage process is also studied with different analysis methods. Finally, an optimized Co9S8 to RGO weight ratio of 6 : 1 shows excellent electrochemical performances in terms of the excellent cycling stability and competitive hydrogen storage capacity of 4.86 wt%.
机译:高能球磨法,Co9S8-decorated降低石墨烯氧化物(RGO)组合,显示良好的储氢能力,已经成功地用一个制作的组织良好的分层结构。组织良好的稳定机制分层结构调查和原因强Co9S8和之间的相互作用有缺陷的RGO。识别和储氢过程还研究了不同的分析方法。最后,一个Co9S8 RGO重量比进行了优化6: 1显示了优异的电化学表现的优秀的自行车稳定和竞争储氢4.86 wt %的能力。

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