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Laser induced self-propagating reduction and exfoliation of graphite oxide as an electrode material for supercapacitors

机译:激光诱导的自蔓延还原和剥落氧化石墨作为超级电容器的电极材料

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摘要

Focused laser beam induced self-propagating reaction has been developed for fabrication of graphene rapidly and efficiently through simultaneous reduction and exfoliation of graphite oxide (GO) process. This chemical-free approach can realize the reduction and exfoliation at room temperature without assistance of any high temperature/vacuum environment. We found that the small sized spot can trigger an ultrafast and highly thermal transferred process by self-propagating reaction at ambient conditions. Benefiting from its high surface area and unique structure, the laser induced self-propagating reaction reduced graphene (LIG) shows excellent capacitive performance. Considering that the cost-effective and feasible process, this facile technique presented here will not only provide a promising method for production of graphene on an industrial scale, but also put forward the application graphene materials in energy storage and conversion.
机译:通过同时还原和剥落氧化石墨(GO)工艺,已开发出聚焦激光束诱导的自蔓延反应来快速有效地制造石墨烯。这种无化学物质的方法无需任何高温/真空环境即可在室温下实现减少和脱落。我们发现,小尺寸的光斑可以通过在环境条件下进行自蔓延反应来触发超快速和高热传递过程。得益于其高表面积和独特的结构,激光诱导的自蔓延反应还原石墨烯(LIG)具有出色的电容性能。考虑到具有成本效益和可行的工艺,本文提出的这种简便技术不仅为工业规模的石墨烯生产提供了有希望的方法,而且提出了石墨烯材料在储能和转化中的应用。

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