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A free-standing, flexible PEDOT:PSS film and its nanocomposites with graphene nanoplatelets as electrodes for quasi-solid-state supercapacitors

机译:一个独立式,柔性PEDOT:PSS膜及其纳米复合材料,具有石墨烯纳米纳薄物作为准固态超级电容器的电极

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摘要

Research and development on all-solid-state, flexible supercapacitors is the prime concern of the scientific community these days due to their various advantages including their easy transportability, miniaturization, and compactness in different appliances. We report the novel configuration of all-solid symmetrical supercapacitors employing free-standing, flexible films of poly(3,4-ethylenedioxythiophene) poly(styrene sulfonate) (PEDOT:PSS) and its nanocomposite electrodes with graphene nanoplatelets (GNPs), separated by ionic liquid (IL) (1-ethyl 3-methylimidazolium trifluoromethanesulfonate (EMITO)-based gel polymer electrolyte (GPE) films The free-standing and flexible form of PEDOT:PSS/GNP nanocomposite films have been prepared via simple mixing of the two counterparts. Scanning electron microscopy, x-ray diffraction, Raman analysis, and thermal and mechanical characterizations have been performed to ascertain the suitability of pristine and nanocomposite PEDOT:PSS films as potential supercapacitor electrodes. The GPE film, comprising of a solution of NH4CF3SO3 (NH4-triflate or NH4Tf) in IL, entrapped in poly(vinylidine fluoride-co-hexafluoropropylene) (PVdF-HFP), is a promising electrolyte due to its high ionic conductivity and sufficient electrochemical stability window. The supercapacitor with a PEDOT:PSS nanocomposite containing similar to 3.8 wt.% of GNP has been found to give an optimum specific capacitance of similar to 106 F g(-1) (evaluated from electrochemical impedance spectroscopy), and specific energy and power of similar to 6.95 Wh kg(-1) and 2.58 kW kg(-1), respectively (evaluated from galvanostatic charge-discharge). More importantly, the capacitors demonstrate stable performance for more than 2000 charge-discharge cycles, with only similar to 10% initial fading in capacitance. Interestingly, the PEDOT:PSS/GNP nanocomposite-based solid-state supercapacitors with the IL-incorporated GPE have shown comparable (even better) performance than other reported PEDOT:PSS-based supercapacitors.
机译:由于各种优势,这些天是各种固态,灵活的超级电容器的研究与开发是科学界的主要关切,包括它们的易于运输,小型化和不同家电中的紧凑性。我们报告了采用聚(3,4-亚乙基氧噻吩)聚(苯乙烯磺酸盐)聚(PEDOT:PSS)(PEDOT:PSS)(PEDOT:PSS)和其纳米复合电极的独立式柔性薄膜的全固体对称超级电容器的新颖结构及其纳米复合电极,用石墨烯纳米键(GNP)分开离子液体(IL)(1-乙基3-甲基咪唑鎓三氟甲磺酸盐(Emito)基于凝胶聚合物电解质电解质(GPE)薄膜通过简单的两个对应物的简单混合制备PSS / GNP纳米复合膜的独立式和柔性形式的PEDOT和柔性形式。已经进行了扫描电子显微镜,X射线衍射,拉曼分析和热和机械表征,以确定原始和纳米复合置位的适用性:PSS膜作为潜在的超级电容电极。GPE膜,包括NH4CF3SO3的溶液(NH4 IL的 - 在聚(氟乙烯 - 六六氟丙烯)(PVDF-HFP)中捕获的IL中,是由于其高离子电导率和足够的电解质电化学稳定性窗口。具有PEDOT的超级电容器:PSS纳米复合材料含有类似于3.8重量%的。已经发现GNP的%占GNP的%,其具有与106f g(-1)相似的最佳电容(从电化学阻抗光谱评估),以及特定的能量和功率。类似于6.95WH kg(-1)和2.58千瓦kg(-1)(从电镀电荷 - 放电评估)。更重要的是,电容器表现出超过2000个充电放电循环的稳定性能,只有类似于电容的10%初始衰落。有趣的是,PEDOT:PSS / GNP纳米复合材料的固态超级电容器具有IL掺入的GPE,表现出比其他报告的PEDOT:PSS的超级电容器相当的(甚至更好)的性能。

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