首页> 外文期刊>Small >Powder, Paper and Foam of Few-Layer Graphene Prepared in High Yield by Electrochemical Intercalation Exfoliation of Expanded GraphitePowder, Paper and Foam of Few-Layer Graphene Prepared in High Yield by Electrochemical Intercalation Exfoliation of Expanded Graphite
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Powder, Paper and Foam of Few-Layer Graphene Prepared in High Yield by Electrochemical Intercalation Exfoliation of Expanded GraphitePowder, Paper and Foam of Few-Layer Graphene Prepared in High Yield by Electrochemical Intercalation Exfoliation of Expanded Graphite

机译:膨胀石墨的电化学插层剥落高产率制备的几层石墨烯的粉末,纸和泡沫粉末膨胀石墨的电化学插层剥落高产率制备的几层石墨烯的粉末,纸和泡沫

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摘要

A facile and high-yield approach to the preparation of few-layer graphene (FLG) by electrochemical intercalation exfoliation (EIE) of expanded graphite in sulfuric acid electrolyte is reported. Stage-1 H_2SO_4-graphite intercalation compound is used as a key intermediate in EIE to realize the efficient exfoliation. The yield of the FLG sheets (<7 layers) with large lateral sizes (tens of microns) is more than 75% relative to the total amount of starting expanded graphite. A low degree of oxygen functionalization existing in the prepared FLG flakes enables them to disperse effectively,which contributes to the film-forming characteristics of the FLG flakes. These electro chemically exfoliated FLG flakes are integrated into several kinds of macroscopic graphene structures. Flexible and freestanding graphene papers made of the FLG flakes retain excellent conductivity (≈24 500 S mr-1). Three-dimensional (3D) graphene foams with light weight are fabricated from the FLG flakes by the use of Ni foams as self-sacrifice templates. Furthermore,3D graphene/Ni foams without any binders,which are used as supercapacitor electrodes in aqueous electrolyte, provide the specific capacitance of 113.2 F g-1 at a current density of 0.5 A g-1,retaining 90% capacitance after 1000 cycles.
机译:报道了一种在硫酸电解质中通过膨胀石墨的电化学插层剥落(EIE)制备几层石墨烯(FLG)的简便且高产率的方法。阶段1 H_2SO_4-石墨插层化合物被用作EIE中的关键中间体,以实现有效的剥离。具有较大横向尺寸(数十微米)的FLG片材(<7层)的收率相对于起始膨胀石墨的总量超过75%。制备的FLG薄片中存在的低程度的氧官能化使其能够有效分散,这有助于FLG薄片的成膜特性。这些电化学剥落的FLG薄片被集成到几种宏观的石墨烯结构中。由FLG薄片制成的柔软,独立的石墨烯纸具有出色的导电性(≈24500 S mr-1)。轻质的三维(3D)石墨烯泡沫是通过使用Ni泡沫作为自我牺牲模板从FLG薄片中制成的。此外,在水性电解质中用作超级电容器电极的不含粘合剂的3D石墨烯/ Ni泡沫材料在0.5 A g-1的电流密度下可提供113.2 F g-1的比电容,在1000次循环后仍可保持90%的电容。

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