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Reduced graphene oxide and polypyrrole/reduced graphene oxide composite coated stretchable fabric electrodes for supercapacitor application

机译:用于超级电容器的还原型氧化石墨烯和聚吡咯/还原型氧化石墨烯复合涂层可拉伸织物电极

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摘要

The advent of self-powered functional garments has given rise to a demand for stretchable energy storage devices that are amendable to integration into textile structures. The electromaterials (anode, cathode and separator) are expected to sustain a deformation of 3% to 55% associated with body movement. Here, we report a stretchable fabric supercapacitor electrode using commonly available nylon lycra fabric as the substrate and graphene oxide (GO) as a dyestuff. It was prepared via a facile dyeing approach followed by a mild chemical reduction. This reduced graphene oxide (rGO) coated fabric electrode retains conductivity at an applied strain of up to 200%. It delivers a specific capacitance of 12.3 F g−1 at a scan rate of 5 mV s−1 in 1.0 M lithium sulfate aqueous solution. The capacitance is significantly increased to 114 F g−1 with the addition of a chemically synthesized polypyrrole (PPy) coating. This PPy-rGO-fabric electrode demonstrates an improved cycling stability and a higher capacitance at 50% strain when compared to the performance observed with no strain.
机译:自供电功能服装的出现引起了对可伸缩能量存储设备的需求,该设备可修改为集成到纺织结构中。预计电子材料(阳极,阴极和隔板)将保持3%至55%的与人体运动相关的变形。在这里,我们报告了一种可拉伸的织物超级电容器电极,该电极使用了常见的尼龙莱卡织物作为基材,氧化石墨烯(GO)作为染料。它是通过简便的染色方法制备的,然后进行轻度的化学还原。这种还原的氧化石墨烯(rGO)涂层的织物电极可在高达200%的施加应变下保持导电性。它在1.0 M硫酸锂水溶液中以5 mV s-1的扫描速率提供12.3 F g-1的比电容。通过添加化学合成的聚吡咯(PPy)涂层,电容显着增加至114 F g-1。与没有应变时观察到的性能相比,这种PPy-rGO织物电极在50%应变时显示出改善的循环稳定性和更高的电容。

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