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Silica-assistant synthesis of three-dimensional graphene architecture and its application as anode material for lithium ion batteries

机译:三维石墨烯结构的二氧化硅辅助合成及其在锂离子电池负极材料中的应用

摘要

A new approach for scalable synthesis of three-dimensional graphene (3d-G) with the assistant of silica is reported. Silica is generated on the surface of graphene oxide through a facile solution reaction. Graphene coated by silica is reduced through thermal reduction. 3d-G can be obtained after the subsequent etching process. The structures and morphologies of samples are investigated. It is demonstrated that the agglomeration of individual graphene sheets during the thermal reduction is effectively avoided under the perfect protection of silica. The electrochemical studies of the material show a significant enhancement in the specific capacity and rate capability of the lithium ion battery over commercially available graphite electrodes due to its unique 3D cross-linked graphene architecture. This method enables us to develop a facile and effective approach to scalable preparation of graphene.
机译:报道了一种在二氧化硅的辅助下可扩展合成三维石墨烯(3d-G)的新方法。通过容易的溶液反应在氧化石墨烯的表面上生成二氧化硅。通过热还原来还原被二氧化硅涂覆的石墨烯。 3d-G可以在随后的蚀刻工艺之后获得。研究了样品的结构和形态。结果表明,在二氧化硅的完美保护下,可以有效避免热还原过程中单个石墨烯片的团聚。材料的电化学研究表明,由于其独特的3D交联石墨烯架构,锂离子电池的比容量和倍率能力明显优于市售石墨电极。这种方法使我们能够开发一种简便有效的方法来可扩展地制备石墨烯。

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