首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >High performance flexible solid-state asymmetric supercapacitor composed of a polyaniline/PEDOT/polyaniline/ultralarge reduced graphene oxide tetralayer film and a PEDOT/MoS2 composite film
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High performance flexible solid-state asymmetric supercapacitor composed of a polyaniline/PEDOT/polyaniline/ultralarge reduced graphene oxide tetralayer film and a PEDOT/MoS2 composite film

机译:高性能柔性固态不对称超级电容器,由聚苯胺/铅/聚苯胺/ UltraRARGE还原的石墨烯氧化物Tetralayer薄膜和PEDOT / MOS2复合膜组成

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摘要

A flexible solid-state asymmetric supercapacitor (ASC) was assembled with a polyaniline (PANi)/PEDOT/PANi/ultralarge reduced graphene oxide (UrGO) tetralayer film (denoted as PPPrG, used as the positive electrode) and a PEDOT/MoS2 film (denoted as PMo, used as the negative electrode) on a flexible polyethylene terephthalate (PET) substrate with polyvinyl alcohol/H2SO4 gel electrolyte. The PPPrG tetralayers were fabricated on PET via a layer-by-layer self-assembly method, whereas the PMo electrode was fabricated on PET using a drop-coating approach. The ASC exhibited a maximum energy density of 5.4 mW h/cm(3) at a power density of 110 mW/cm(3), demonstrating excellent electrochemical performance without performance loss despite various deformation states due to high conductivity and flexibility of the multilayer film electrodes, which act as both the active electrode and the current collector. The ASC retained an energy density of 4.0 mW h/cm(3) at a power density of 265 mW/cm(3) with an optimized cell voltage of 0.8 V. The excellent performance of this ASC was ascribed mainly to the conductivity of the multilayer film electrodes, which was improved by the combination of PANi, UrGO and PEDOT layers, which functioned as conducting networks in the nanostructured composite films. This flexible ASC system based on multilayer film electrodes with superior capacitive performance offers substantial promise for use in grid-scale energy storage devices integrated into portable and bio-implantable microelectronic devices.
机译:用聚苯胺(PANI)/ PADOT / PANI / UltraRarge还原的石墨烯(URGO)Tetralayay膜(表示为PPPRG,用作正电极)和PEDOT / MOS2薄膜(用聚乙烯醇/ H2SO4凝胶电解质表示为柔性聚对苯二甲酸乙二醇酯(PET)基材上用作负电极的PMO。通过层逐层自组装方法在PET上制造PPPRG Tetralayers,而使用滴涂的方法在PET上制造PMO电极。 ASC以110mW / cm(3)的功率密度显示出5.4mW H / cm(3)的最大能量密度,尽管多层膜的高导电性和灵活性,但由于多层薄膜的高导电性和柔韧性,但展示了优异的电化学性能而没有性能损失作为有源电极和集电器的电极。 ASC以265mW / cm(3)的功率密度保持4.0 mW H / cm(3)的能量密度,优化电池电压为0.8V。该ASC的优异性能主要归因于导电性通过PANI,URGO和PEDOT层的组合改善多层膜电极,其用作纳米结构复合膜中的导电网络。这种基于具有优异电容性能的多层胶片电极的灵活ASC系统提供了在集成到便携式和生物可植入的微电子器件中的网格级能量存储设备中的实质性承诺。

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