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首页> 外文期刊>Nanotechnology >Flexible and freestanding supercapacitor based on nanostructured poly(m-aminophenol)/carbon nanofiber hybrid mats with high energy and power densities
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Flexible and freestanding supercapacitor based on nanostructured poly(m-aminophenol)/carbon nanofiber hybrid mats with high energy and power densities

机译:基于纳米结构聚(M-氨基苯酚)/碳纳米纤维混合垫的柔性和独立的超级电容器,具有高能量和功率密度

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Nanostructured poly(m-aminophenol) (PmAP) coated freestanding carbon nanofiber (CNF) mats were fabricated through simple in situ rapid-mixing polymerization of m-aminophenol in the presence of a CNF mat for flexible solid-state supercapacitors. The surface compositions, morphology and pore structure of the hybrid mats were characterized by using various techniques, e.g., FTIR, Raman, XRD, FE-SEM, TEM, and N-2 absorption. The results show that the PmAP nanoparticles were homogeneously deposited on CNF surfaces and formed a thin flexible hybrid mat, which were directly used to made electrodes for electrochemical analysis without using any binders or conductive additives. The electrochemical performances of the hybrid mats were easily tailored by varying the PmAP loading on a hybrid electrode. The PmAP/CNF-10 hybrid electrode with a relatively low PmAP loading ( 42 wt%) showed a high specific capacitance of 325.8 F g(-1) and a volumetric capacitance of 273.6 F cm(-3) at a current density of 0.5A g(-1), together with a specific capacitance retention of 196.2 F g-1 at 20 A g(-1). The PmAP/CNF-10 hybrid electrode showed good cycling stability with 88.2% capacitance retention after 5000 cycles. A maximum energy density of 45.2Wh kg(-1) and power density of 20.4 kWkg(-1) were achieved for the PmAP/CNF-10 hybrid electrode. This facile and cost-effective synthesis of a flexible binder-free PmAP/CNF hybrid mat with excellent capacitive performances encourages its possible commercial exploitation.
机译:纳米结构化的聚(间氨基苯酚)(PMAP)涂覆的独立式的碳纳米纤维(CNF)毡通过简单的原位制造的间氨基苯酚的快速混合聚合在CNF垫灵活固态超级电容器的存在。通过使用多种技术,例如,FTIR,拉曼光谱,XRD,FE-SEM,TEM,和N-2的吸收混合垫的表面的组合物,形态和孔结构进行了表征。该结果表明,该纳米颗粒PMAP均匀沉积在CNF表面和形成的薄柔性混合垫,其直接用于为电化学分析制成的电极,而不使用任何粘合剂或导电添加剂。的混合垫的电化学性能很容易被在混合动力车电极改变PMAP加载定制。具有相对低的PMAP装载PMAP / CNF-10混合电极(大于42重量%)显示出的325.8 F G高的比电容(-1),273.6˚F厘米(-3)在电流密度的体积电容的0.5A克(-1),在20甲克196.2 F G-1的特定电容保持在一起(-1)。 5000次循环后的PMAP / CNF-10混合电极显示出与88.2%容量维持良好的循环稳定性。的45.2Wh公斤(-1)和20.4 kWkg(-1)的功率密度最大能量密度为PMAP / CNF-10混合电极来实现的。此容易和灵活的无粘合剂的PMAP / CNF混合垫板的成本效益的合成具有优异电容特性鼓励其可能商业开发。

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