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Covalent organic framework-derived microporous carbon nanoparticles coated with conducting polypyrrole as an electrochemical capacitor

机译:共价有机骨架衍生的微孔碳纳米粒子包覆导电聚吡咯作为电化学电容器

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We report a high-performance electrochemical capacitor based on covalent organic framework (COF)-derived microporous carbon (MPC) nanoparticles and electrochemically polymerized polypyrrole (Ppy) as a pseudocapacitive material. The COF, Schiff-based network-1 (SNW-1) nanoparticles are prepared via a condensation reaction between melamine and terephthalaldehyde, and the resultant MPC film is prepared via a screen-printing method. The MPC film exhibits a bimodal porous structure with micropores and macropores, resulting in both a large surface area and good electrolyte infiltration. Ppy is synthesized potentio-statically (0.8 V vs. Ag/AgCl) by varying the reaction time, and successful synthesis of Ppy is confirmed via Raman spectroscopy. The specific capacitance with the Ppy coating is enhanced by up to 2.55 F cm(-2) due to the synergetic effect of pseudocapacitance and reduced resistance. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们报告了基于共价有机骨架(COF)衍生的微孔碳(MPC)纳米粒子和电化学聚合的聚吡咯(Ppy)作为拟电容材料的高性能电化学电容器。通过三聚氰胺和对苯二甲醛之间的缩合反应制备基于Schiff的COF网络-1(SNW-1)纳米颗粒,并通过丝网印刷方法制备所得的MPC膜。 MPC膜表现出具有微孔和大孔的双峰多孔结构,导致较大的表面积和良好的电解质渗透。通过改变反应时间,可以静态地合成Ppy(0.8 V vs. Ag / AgCl),并通过拉曼光谱法证实了Ppy的成功合成。由于伪电容的协同作用和减小的电阻,Ppy涂层的比电容最多可提高2.55 F cm(-2)。 (C)2018 Elsevier B.V.保留所有权利。

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