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Three-dimensional strutted graphene grown by substrate-free sugar blowing for high-power-density supercapacitors

机译:高功率密度超级电容器的无基材吹糖法生长的三维支撑石墨烯

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Three-dimensional graphene architectures in the macroworld can in principle maintain all the extraordinary nanoscale properties of individual graphene flakes. However, current 3D graphene products suffer from poor electrical conductivity, low surface area and insufficient mechanical strength/elasticity; the interconnected self-supported reproducible 3D graphenes remain unavailable. Here we report a sugar-blowing approach based on a polymeric predecessor to synthesize a 3D graphene bubble network. The bubble network consists of mono- or few-layered graphitic membranes that are tightly glued, rigidly fixed and spatially scaffolded by micrometre-scale graphitic struts. Such a topological configuration provides intimate structural interconnectivities, freeway for electron/phonon transports, huge accessible surface area, as well as robust mechanical properties. The graphene network thus overcomes the drawbacks of presently available 3D graphene products and opens up a wide horizon for diverse practical usages, for example, high-power high-energy electrochemical capacitors, as highlighted in this work.
机译:宏观世界中的三维石墨烯结构原则上可以保持单个石墨烯薄片的所有非凡的纳米级特性。但是,当前的3D石墨烯产品具有导电性差,表面积低以及机械强度/弹性不足的缺点。互连的自支撑可重现3D石墨烯仍然不可用。在这里,我们报告了一种基于聚合物前身的糖吹制方法来合成3D石墨烯气泡网络。气泡网络由单层或几层石墨膜组成,这些膜通过微米级的石墨支撑紧密粘合,牢固固定并在空间上被支撑。这种拓扑结构提供了紧密的结构互连性,用于电子/声子传输的高速公路,巨大的可及表面积以及强大的机械性能。因此,石墨烯网络克服了目前可用的3D石墨烯产品的缺点,并为各种实际用途(例如,高功率高能电化学电容器)开辟了广阔的前景,如本工作所述。

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