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Oxygen Evolution Assisted Fabrication of Highly Loaded Carbon Nanotube/MnO2 Hybrid Films for High-Performance Flexible Pseudosupercapacitors

机译:用于高性能柔性伪超级电容器的高负荷碳纳米管/ MnO2杂化膜的氧析出辅助制备。

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摘要

To date, it has been a great challenge to design high-performance flexible energy storage devices for sufficient loading of redox species in the electrode assemblies, with well-maintained mechanical robustness and enhanced electron/ionic transport during charge/discharge cycles. An electrochemical activation strategy is demonstrated for the facile regeneration of carbon nanotube (CNT) film prepared via floating catalyst chemical vapor deposition strategy into a flexible, robust, and highly conductive hydrogel-like film, which is promising as electrode matrix for efficient loading of redox species and the fabrication of high-performance flexible pseudosupercapacitors. The strong and conductive CNT films can be effectively expanded and activated by electrochemical anodic oxygen evolution reaction, presenting greatly enhanced internal space and surface wettability with well-maintained strength, flexibility, and conductivity. The as-formed hydrogel-like film is quite favorable for electrochemical deposition of manganese dioxide (MnO2) with loading mass up to 93 wt% and electrode capacitance kept around 300 F g(-1) (areal capacitance of 1.2 F cm(-2)). This hybrid film was further used to assemble a flexible symmetric pseudosupercapacitor without using any other current collectors and conductive additives. The assembled flexible supercapacitors exhibited good rate performance, with the areal capacitance of more than 300 mF cm(-2), much superior to other reported MnO2 based flexible thin-film supercapacitors.
机译:迄今为止,设计高性能的柔性储能装置以在电极组件中充分加载氧化还原物质,同时保持良好的机械强度和在充电/放电循环中增强的电子/离子传输,一直是一个巨大的挑战。演示了一种电化学活化策略,该方法可将通过浮动催化剂化学气相沉积策略制备的碳纳米管(CNT)膜轻松再生为柔性,坚固且高导电性的水凝胶状膜,有望作为有效负载氧化还原的电极基质种类和高性能柔性伪超级电容器的制造。坚固且导电的CNT膜可通过电化学阳极氧气析出反应有效地扩展和活化,从而大大增强了内部空间和表面润湿性,并具有良好的强度,柔韧性和导电性。形成的水凝胶状薄膜非常适合于二氧化锰(MnO2)的电化学沉积,负载质量高达93 wt%,电极电容保持在300 F g(-1)左右(面积电容为1.2 F cm(-2) ))。该混合膜还用于组装柔性对称伪超级电容器,而无需使用任何其他集电器和导电添加剂。组装的柔性超级电容器表现出良好的倍率性能,面积电容超过300 mF cm(-2),远远优于其他已报道的基于MnO2的柔性薄膜超级电容器。

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