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Reduced graphene oxide hydrogel film with a continuous ion transport network for supercapacitors

机译:氧化石墨烯水凝胶膜的减少连续离子传输网络超级电容器

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摘要

Stacking of Graphene usually results in a close packing of graphene nanosheeets corresponding to a low specific surface area and pore volume. A new simple method to prepare reduce graphene oxide (rGO) film has been developed using an in situ electrochemical reduction of the as-formed GO hydrogel film in an aqueous solution electrolyte. The as-obtained rGO hydrogel film has a highly specific surface area and was directly used as the electrodes for a supercapacitor, in which the ion channels remained with excellent capacitance, even at a high current density. The as-obtained rGO hydrogel film has also been used to prepare a flexible belt-like supercapacitor, which may light up a LED lamp for more than two minutes. Electrochemical in situ reduction provides a simple method to prepare novel graphene based supercapacitors for a wide variety of applications in the near future.
机译:堆积的石墨烯通常会导致结束石墨烯nanosheeets对应的包装较低的比表面积和孔体积。新的简单的方法降低石墨烯做准备氧化(rGO)使用的电影了初纺的原位电化学还原去水凝胶膜在水溶液中电解液。有一个高度比表面积和是什么直接用作一个电极超级电容器,离子通道仍然以优异的电容,甚至在一个高电流密度。水凝胶膜也被用来准备一个灵活的片带状超级电容器,这可能点亮LED灯超过两分钟。电化学原位还原提供了简单的方法新颖的基于石墨烯做准备各种各样的超级电容器应用程序在不久的将来。

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