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Wet-spinning assembly of continuous neat and macroscopic graphene fibers

机译:连续整齐和宏观的石墨烯纤维的湿纺组件

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摘要

Graphene is now the most attractive carbon-based material. Integration of 2D graphene sheets into macroscopic architectures such as fibers illuminates the direction to translate the excellent properties of individual graphene into advanced hierarchical ensembles for promising applications in new graphene-based nanodevices. However, the lack of effective, low-cost and convenient assembly strategy has blocked its further development. Herein, we demonstrate that neat and macroscopic graphene fibers with high mechanical strength and electrical conductivity can be fluidly spun from the common graphene oxide (GO) suspensions in large scale followed with chemical reduction. The curliness-fold formation mechanism of GO fiber has been proposed. This wet-spinning technique presented here facilitates the multifunctionalization of macroscopic graphene-based fibers with various organic or inorganic components by an easy-handle in situ or post-synthesis approach, which builds the solid foundation to access a new family of advanced composite materials for the next practical applications.
机译:石墨烯现在是最有吸引力的碳基材料。将2D石墨烯片材集成到诸如纤维之类的宏观体系结构中,阐明了将单个石墨烯的优异性能转化为先进的层级集成体以在基于石墨烯的新型纳米器件中有望应用的方向。但是,缺乏有效,低成本和便捷的组装策略阻碍了其进一步发展。在本文中,我们证明了具有高机械强度和导电性的整齐且宏观的石墨烯纤维可以从普通的氧化石墨烯(GO)悬浮液中大量纺丝,然后进行化学还原。已经提出了GO纤维的卷曲折叠形成机理。本文介绍的这种湿纺技术通过易于处理的原位或后合成方法,促进了具有各种有机或无机成分的宏观石墨烯基纤维的多功能化,从而为使用新的高级复合材料系列奠定了坚实的基础。接下来的实际应用。

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