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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Electrochemically exfoliated graphene oxide/iron oxide composite foams for lithium storage, produced by simultaneous graphene reduction and Fe(OH)(3) condensation
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Electrochemically exfoliated graphene oxide/iron oxide composite foams for lithium storage, produced by simultaneous graphene reduction and Fe(OH)(3) condensation

机译:通过同时石墨烯还原和Fe(OH)(3)缩合生产的用于锂存储的电化学剥离氧化石墨烯/氧化铁复合泡沫

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摘要

We describe the production of graphene-based composites for energy storage, obtained by a combination of electrochemical and solution processing techniques. Electrochemically exfoliated graphene oxide sheets (EGO) are produced using an original setup that allows fast expansion of graphite flakes and efficient exfoliation of expanded graphite via an electrochemical route. The sheets are deposited on a sacrificial nickel foam together with an iron hydroxide colloidal precursor. Calcination treatment simultaneously renders the EGO foam conductive and transforms Fe(OH)(3) into hematite (alpha-Fe2O3), yielding a nanoporous Fe2O3 layer on the surface of the mesoporous EGO foam, creating an ideal structure for lithium storage. The obtained graphene/metal oxide hybrid is a continuous, electrically conductive three-dimensional (3D) composite featuring a hierarchical meso-nano porous structure. A systematic study of these composites, varying the Fe2O3:EGO ratio, is then performed to maximize their performance as nanostructured electrodes in standard coin cell batteries. (C) 2014 Elsevier Ltd. All rights reserved.
机译:我们描述了通过结合电化学和溶液处理技术获得的用于储能的石墨烯基复合材料的生产。电化学剥落氧化石墨烯片(EGO)使用原始设置生产,该设置允许通过电化学途径使石墨薄片快速膨胀并有效剥落膨胀石墨。片材与氢氧化铁胶体前体一起沉积在牺牲性镍泡沫上。煅烧处理可同时使EGO泡沫具有导电性,并将Fe(OH)(3)转变为赤铁矿(α-Fe2O3),在中孔EGO泡沫的表面上产生纳米孔Fe2O3层,从而为锂存储提供了理想的结构。所获得的石墨烯/金属氧化物杂化物是具有分层的中纳米多孔结构的连续导电三维(3D)复合材料。然后对这些复合材料(Fe2O3:EGO比例不同)进行系统研究,以最大程度地发挥其作为标准纽扣电池中纳米结构电极的性能。 (C)2014 Elsevier Ltd.保留所有权利。

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