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A \u22skeleton/skin\u22strategy for preparing ultrathin free-standing single-walled carbon nanotube/polyaniline films for high performance supercapacitor electrodes

机译:用于制备高性能超级电容器电极的超薄自立式单壁碳纳米管/聚苯胺薄膜的骨架/皮肤策略

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摘要

One of the most critical aspects in the preparation of single-walled carbon nanotubes (SWCNTs)/ conducting polymer hybrid electrodes is to improve the energy density without seriously deteriorating their high power capability. Here, we report a ‘‘skeleton/skin’’ strategy for the preparation of freestanding, thin and flexible SWCNT/polyaniline (PANI) hybrid films by a simple in situ electrochemical polymerization method using directly grown SWCNT films with a continuous reticulate structure as template. In situ electrochemical polymerization can achieve effective deposition of PANI onto the surface of SWCNT bundles in the films and control the morphology and microstructure of the SWCNT/PANI hybrid films. In a SWCNT/PANI hybrid film, the directly grown SWCNT film with continuous reticulate architecture acts as the skeleton and PANI layers act as the skin. This unique continuous ‘‘skeleton/skin’’ structure ensures that these hybrid films have much higher conductivity compared to SWCNT/PANI composite films based on post-deposition SWCNT films. Flexible supercapacitors have been fabricated using the SWCNT/PANI hybrid films as both electrodes and charge collectors without metallic current collectors. High energy and power densities (131 W h kg 1 and 62.5 kW kg 1, respectively) have been achieved for the optimized assembly. The high electrical conductivity and flexibility, in combination with continuous porous architecture, suggests that the asprepared ultrathin free-standing SWCNT/PANI hybrid films have significant potential as promising electrode materials for thin, lightweight and flexible energy storage devices with high performance.
机译:制备单壁碳纳米管(SWCNT)/导电聚合物混合电极的最关键方面之一是在不严重降低其高功率能力的情况下提高能量密度。在这里,我们报告了一种“骨架/皮肤”策略,该策略通过使用直接生长的具有连续网状结构的SWCNT膜的简单原位电化学聚合方法,制备独立,薄而灵活的SWCNT /聚苯胺(PANI)杂化膜。原位电化学聚合可以有效地将PANI沉积到薄膜中SWCNT束的表面上,并控制SWCNT / PANI杂化薄膜的形态和微观结构。在SWCNT / PANI混合膜中,具有连续网状结构的直接生长的SWCNT膜充当骨架,而PANI层充当皮肤。这种独特的连续“骨架/皮肤”结构确保与基于沉积后SWCNT膜的SWCNT / PANI复合膜相比,这些混合膜具有更高的导电性。使用SWCNT / PANI混合膜作为电极和不带金属集电器的电荷收集器,已经制造出了柔性超级电容器。对于优化的组件,已经实现了高能量和功率密度(分别为131 W h kg 1和62.5 kW kg 1)。高电导率和柔韧性以及连续的多孔结构表明,所制备的超薄自立式SWCNT / PANI杂化膜作为具有潜力的薄,轻量和柔性储能器件的高性能电极材料具有巨大潜力。

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