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Graphene-Wrapped Polyaniline Hollow Spheres As Novel Hybrid Electrode Materials for Supercapacitor Applications

机译:石墨烯包裹的聚苯胺空心球作为用于超级电容器的新型混合电极材料

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Polyaniline hollow spheres (PANI-HS)@electrochemicaJ reduced graphene oxide (ERGO) hybrids with core-shell structures have been fabricated via a solution-based coassembly process. The hollow nanostructured designing for the PANI-HS greatly enlarges the specific surface area, providing high electroactive regions and short diffusion lengths for both charge and ion transport. The wrapping of ERGO sheets on the PANI-HS can offer highly conductive pathways by bridging individual PANI-HS together, thus facilitating the rate and cycling performance of supercapacitors. The specific capacitance of PANI-HS36@ERGO hybrids can reach 614 F g~(-1) at a current density of 1 A g~(-1). Furthermore, the capacitance of the PANI-HS36@ERGO hybrids maintains 90% after 500 charging/discharging cycles at a current density of 1 A g~(-1), indicating a good cycling stability. The greatly enhanced electrochemical performance can be ascribed to the synergic effects of the two components of PANI-HS and ERGO, suggesting that the PANI-HS@ERGO hybrids as novel electrode materials may have potential applications in high-performance energy storage devices.
机译:聚苯胺空心球(PANI-HS)@电化学还原的氧化石墨烯(ERGO)具有核-壳结构的杂化物已经通过基于溶液的共组装工艺制备。 PANI-HS的中空纳米结构设计大大增加了比表面积,为电荷和离子传输提供了高电活性区域和短扩散长度。通过将各个PANI-HS桥接在一起,将ERGO薄板包裹在PANI-HS上可以提供高度导电的路径,从而有利于超级电容器的速率和循环性能。在1 A g〜(-1)的电流密度下,PANI-HS36 @ ERGO杂化材料的比电容可以达到614 F g〜(-1)。此外,PANI-HS36 @ ERGO杂化物的电容在500 A的充/放电循环后,在1 A g〜(-1)的电流密度下保持90%,表明良好的循环稳定性。电化学性能的大大提高可归因于PANI-HS和ERGO两种成分的协同作用,这表明PANI-HS @ ERGO杂化物作为新型电极材料可能在高性能储能装置中具有潜在的应用。

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