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High performance of a solid-state flexible asymmetric supercapacitor based on graphene films

机译:高性能的固态灵活非对称超级电容器基于石墨烯的电影

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Solid-state flexible energy storage devices hold the key to realizing portable and flexible electronic devices. Achieving fully flexible energy storage devices requires that all of the essential components (i. e., electrodes, separator, and electrolyte) with specific electrochemical and interfacial properties are integrated into a single solid-state and mechanically flexible unit. In this study, we describe the fabrication of solid-state flexible asymmetric supercapacitors based on an ionic liquid functionalized-chemically modified graphene (IL-CMG) film (as the negative electrode) and a hydrous RuO2-IL-CMGcomposite film (as the positive electrode), separated with polyvinyl alcohol-H2SO4 electrolyte. The highly ordered macroscopic layer structures of these films arising through direct flow self-assembly make them simultaneously excellent electrical conductors and mechanical supports, allowing them to serve as flexible electrodes and current collectors in supercapacitor devices. Our asymmetric supercapacitors have been optimized with a maximum cell voltage up to 1.8 V and deliver a high energy density (19.7 W h kg~(-1)) and power density (6.8 kW g~(-1)), higher than those of symmetric supercapacitors based on IL-CMG films. They can operate even under an extremely high rate of 10 A g~(-1) with 79.4% retention of specific capacitance. Their superior flexibility and cycling stability are evident in their good performance stability over 2000 cycles under harsh mechanical conditions including twisted and bent states. These solid-state flexible asymmetric supercapacitors with their simple cell configuration could offer new design and fabrication opportunities for flexible energy storage devices that can combine high energy and power densities, high rate capability, and long-term cycling stability.
机译:固态弹性能量存储设备实现便携式和灵活的关键电子设备。能源存储设备要求的所有基本组件(即电极,分离器和电解质)与特定的电化学和界面性质集成到一个单一固态和机械灵活的单位。描述固态柔性的制造基于离子的非对称超级电容器液体functionalized-chemically修改石墨烯(IL-CMG)电影(负电极)和含水RuO2-IL-CMGcomposite电影(正极),分离聚乙烯醇alcohol-H2SO4电解液。这些命令宏观层结构电影通过直接产生流自组装同时让他们优秀的电导体和机械支持,允许他们作为柔性电极和电流收藏家在超级电容器设备。非对称超级电容器优化最大电压1.8 V提供高的能量密度(19.7 W h公斤~ (1))和功率密度(6.8 kW g ~(1)),高于对称超级电容器的基础上IL-CMG电影。极高的速度10 g ~(1)为79.4%保留特定的电容。灵活性和循环稳定性明显其良好的性能稳定超过2000周期在严酷的机械条件下包括扭曲和弯曲状态。灵活的非对称超级电容器与他们简单的单元配置可以提供新的设计灵活的能源和制造机会存储设备,可以结合能源和高功率密度,高速率的能力,长期循环稳定性。

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