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Fabrication of thickness controllable free-standing sandwich-structured hybrid carbon film for high-rate and high-power supercapacitor

机译:用于高倍率和大功率超级电容器的可控制厚度的独立式夹心结构混合碳膜的制备

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摘要

Hybrid carbon films composed of graphene film and porous carbon film may give full play to the advantages of both carbon materials, and have great potential for application in energy storage and conversion devices. Unfortunately, there are very few reports on fabrication of hybrid carbon films. Here we demonstrate a simple approach to fabricate free-standing sandwich-structured hybrid carbon film composed of porous amorphous carbon film and multilayer graphene film by chemical vapor deposition in a controllable and scalable way. Hybrid carbon films reveal good electrical conductivity, excellent flexibility, and good compatibility with substrate. Supercapacitors assembled by hybrid carbon films exhibit ultrahigh rate capability, wide frequency range, good capacitance performance, and high-power density. Moreover, this approach may provide a general path for fabrication of hybrid carbon materials with different structures by using different metals with high carbon solubility, and greatly expands the application scope of carbon materials.
机译:由石墨烯膜和多孔碳膜组成的混合碳膜可以充分发挥两种碳材料的优势,在储能和转换装置中具有广阔的应用前景。不幸的是,关于混合碳膜的制造的报道很少。在这里,我们演示了一种简单的方法,以可控和可扩展的方式通过化学气相沉积来制造由多孔无定形碳膜和多层石墨烯膜组成的独立式三明治结构杂化碳膜。杂化碳膜显示出良好的导电性,出色的柔韧性和与基材的良好相容性。由混合碳膜组装而成的超级电容器具有超高倍率性能,宽频率范围,良好的电容性能和高功率密度。而且,该方法可为通过使用具有高碳溶解度的不同金属制备具有不同结构的杂化碳材料提供一般途径,并大大扩展了碳材料的应用范围。

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