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首页> 外文期刊>Nanoscale >Nickel cobaltite@poly(3,4-ethylenedioxypyrrole) and carbon nanofiber interlayer based flexible supercapacitors
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Nickel cobaltite@poly(3,4-ethylenedioxypyrrole) and carbon nanofiber interlayer based flexible supercapacitors

机译:和碳纳米纤维层间基于灵活超级电容器

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Binder free flexible symmetric supercapacitors are developed with nickel cobaltite micro-flower coated poly(3,4-ethylenedioxypyrrole) (NiCo2O4@PEDOP) hybrid electrodes. The free standing films of carbon nano-fibers (CNFs), synthesized by electrospinning, were sandwiched between the NiCo2O4@PEDOP hybrid and the electrolyte coated separators on both sides of the cells. The CNF film conducts both ions and electrons, and confines the charge at the respective electrodes, to result in an improved specific capacitance (SC) and energy density compared to the analogous cell without the CNF interlayers. A high SC of 1775 F g(-1) at a low current density of 0.96 A g(-1) and an SC of 634 F g(-1) achieved at a high current density of 38 A g(-1) coupled with an SC retention of approximate to 95% after 5000 charge-discharge cycles in the NCO@PEDOP/CNF based symmetric supercapacitor, are performance attributes superior to those achieved with NCO and NCO/CNF based symmetric cells. The PEDOP coating serves as a highly conductive matrix for the NCO micro-flowers and also undergoes doping/de-doping during the charge-discharge, thus amplifying the overall supercapacitor response, compared to the individual components. The CNF interlayers show reasonably high ion-diffusion coefficients for K+ and OH- propagation, implying facile pathways available for the movement of ions across the cross-section of the cell, and they also serve as ion reservoirs. The electrode morphologies remain unaffected by cycling in the presence of the CNF interlayer. LED illumination and a largely unaltered charge storage response were achieved in a mutli-cell configuration, proving the potential for this approach in practical applications.
机译:粘结剂自由灵活的对称超级电容器开发与镍辉钴矿微流4-ethylenedioxypyrrole涂布聚(3)(NiCo2O4@PEDOP)混合电极。站在电影的碳纳米纤维(cnf),合成了电纺的,被夹在中间NiCo2O4@PEDOP混合和之间电解液涂布两岸分隔符的细胞。电子,和束缚电荷各自的电极,导致一种改进特定的电容(SC)和能量密度而没有CNF的类似的细胞夹层。电流密度为0.96 g(1)和SC 634F (g(1)实现高电流密度的38g(1)加上一个SC保留5000年之后的充放电近似到95%在基于NCO@PEDOP / CNF对称周期超级电容器性能属性优于NCO和NCO / CNF实现基于对称的细胞。作为一个高导电NCO矩阵micro-flowers也经历了掺杂/ de-doping在充放电,从而放大了整体超级电容器的反应,相比各个组件。合理的高K +离子扩散系数哦,传播,这意味着肤浅通路离子的运动细胞的横截面,也作为离子水库。影响自行车CNF的存在层间。一成不变的电荷存储响应在mutli-cell配置中,证明这种方法在实际的潜力应用程序。

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