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Redox additive enhanced capacitance: Multi-walled carbon nanotubes/ polyaniline nanocomposite based symmetric supercapacitors for rapid charge storage

机译:氧化还原添加剂增强的电容:基于多壁碳纳米管/聚苯胺纳米复合材料的对称超级电容器,可快速存储电荷

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In the present study, we report all-solid-state high energy density symmetric supercapacitors based on partially exfoliated multi-walled carbon nanotubes (Px-MWCNT)/Polyaniline (PANI) nanocomposites with redox-active polymer gel as an electrolyte/separator. Fabrication of mechanically stable polymer gel electrolyte with high ionic conductivity, excellent compatibility with the active material, and long cycle life is pivotal to obtain superior electrochemical performance for flexible solid-state supercapacitor devices. An organically reversible redox-active (hydroquinone-HQ) non-covalent approach adopted to achieve the significant enhancement in specific capacitance. The highest specific capacitance of 186.1, 809.6 and 644.4 F g(-1) was achieved at 25 mV s-1 for Px-MWCNT, Px-MWCNT/PANI and PANI based symmetric supercapacitor cells, respectively. The enhancement in capacitance was found to be increased in the order of 82.5%, 129% and 34.3% for Px-MWCNT, Px-MWCNT/PANI, and PANI respectively when compared with devices lacking in redox-active HQ. Moreover, incorporation of redox-active HQ transforms the pseudocapacitance to battery-type behavior. The polymer grafted morphology of nanocomposite (Px-MWCNT/PANI) in 1:1 wt ratio as an electrode material with redoxactive gel polymer electrolyte exhibits synergistic effect in specific capacitance enhancement with excellent charge-discharge rate capability and electrochemical stability (78% capacitive retention after 2000 cycles) than pure PANI (69.4% capacitive retention after 2000 cycles) based supercapacitor.
机译:在本研究中,我们报告了基于部分剥落的多壁碳纳米管(Px-MWCNT)/聚苯胺(PANI)纳米复合材料的全固态高能量密度对称超级电容器,其中氧化还原活性聚合物凝胶作为电解质/分离器。具有高离子电导率,与活性材料的优异相容性以及长循环寿命的机械稳定的聚合物凝胶电解质的制备对于获得柔性固态超级电容器器件的优异电化学性能至关重要。采用有机可逆的氧化还原活性(对苯二酚-HQ)非共价方法来实现比电容的显着提高。对于Px-MWCNT,Px-MWCNT / PANI和基于PANI的对称超级电容器,在25 mV s-1时分别达到186.1、809.6和644.4 F g(-1)的最高比电容。与缺少氧化还原活性总部的设备相比,Px-MWCNT,Px-MWCNT / PANI和PANI的电容增强分别达到了82.5%,129%和34.3%。此外,氧化还原活性HQ的引入将伪电容转换为电池类型的行为。以1:1重量比与氧化还原活性凝胶聚合物电解质作为电极材料的纳米复合物(Px-MWCNT / PANI)的聚合物接枝形态在增容比电容方面具有协同效应,具有出色的充放电速率能力和电化学稳定性(78%的电容保持率)在2000次循环后)比基于纯PANI(2000次循环后69.4%的电容保持率)的超级电容器高。

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