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Spine-like Nanostructured Carbon Interconnected by Graphene for High-performance Supercapacitors

机译:石墨烯互连的脊状纳米结构碳用于高性能超级电容器

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摘要

Recent studies on supercapacitors have focused on the development of hierarchical nanostructured carbons by combining two-dimensional graphene and other conductive sp2 carbons, which differ in dimensionality, to improve their electrochemical performance. Herein, we report a strategy for synthesizing a hierarchical graphene-based carbon material, which we shall refer to as spine-like nanostructured carbon, from a one-dimensional graphitic carbon nanofiber by controlling the local graphene/graphitic structure via an expanding process and a co-solvent exfoliation method. Spine-like nanostructured carbon has a unique hierarchical structure of partially exfoliated graphitic blocks interconnected by thin graphene sheets in the same manner as in the case of ligaments. Owing to the exposed graphene layers and interconnected sp2 carbon structure, this hierarchical nanostructured carbon possesses a large, electrochemically accessible surface area with high electrical conductivity and exhibits high electrochemical performance.
机译:超级电容器的最新研究集中于通过将二维石墨烯和其他尺寸不同的导电性sp 2 碳结合以改善其电化学性能,从而开发出分层的纳米结构碳。在这里,我们报告了一种策略,该方法是通过一维石墨碳纳米纤维通过扩展过程和局部控制石墨烯/石墨结构来合成基于层状石墨烯的碳材料,我们将其称为脊柱状纳米结构碳。共溶剂剥离法。脊柱状纳米结构碳具有独特的分层结构,即部分剥落的石墨嵌段通过薄的石墨烯片相互连接,与韧带的情况相同。由于裸露的石墨烯层和互连的sp 2 碳结构,这种分层的纳米结构碳具有较大的,电化学可及的表面积和高电导率,并具有较高的电化学性能。

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