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Fabrication of cellulose acetate-chitosan based flexible 3D scaffold-like porous membrane for supercapacitor applications with PVA gel electrolyte

机译:用PVA凝胶电解质制备醋酸纤维素 - 壳聚糖的柔性3D支架样多孔膜的柔性3D支架样多孔膜

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摘要

The focus of this study was on the preparation of porous bio-based matrix with a view to fabricating the environment-friendly supercapacitors from two sustainable materials, cellulose acetate (CA) and chitosan (CS). The strategy used is, first preparing a tri-hybrid of rGO/NiO/Fe3O4 (rNF) particles followed by mixing it into CA/CS (CC), as prepared CC/rNF was then dipped into aniline. After the impregnation by aniline, the polymerization proceeded to get a CA/CS/PANI/rNF (CCPRNF) electrode. The prepared electrode shows excellent properties such as high conductivity (7.1 x 10(-2) S/cm), an areal capacitance of 16.61 mF/cm(2) at a scan rate of 5 mV/s and 88% capacitance retention after 1000 cycles. The symmetric device fabricated from 15% CCPRNF achieved areal capacitance of 5.5 mF/cm(2) (scan rate 20 mV/s). Herein, we suggest a new approach for the construction of environment-friendly, flexible, conducting, 3D scaffold-like porous electrodes for supercapacitors using CA/CS through simple "phase inversion and in-situ polymerization method".
机译:本研究的重点是制备多孔生物基基质,以制造来自两种可持续材料,醋酸纤维素(CA)和壳聚糖(CS)的环保型超级电容器。所使用的策略是首先制备rgo / NiO / Fe 3 O 4(RNF)颗粒的三杂化,然后将其混合到Ca / Cs(CC)中,然后将制备的Cc / RNF浸入苯胺中。在苯胺浸渍后,进行聚合以获得Ca / Cs / PANI / RNF(CCPRNF)电极。制备的电极显示出优异的性质,例如高导电率(7.1×10(-2)S / cm),在1000mV / s的扫描速率下,16.61mF / cm(2)的面积电容为5mV / s和88%电容保留循环。由15%CCPRNF制造的对称装置实现了5.5mF / cm(2)的面积电容(扫描速率20mV / s)。在此,我们建议使用CA / CS通过简单的“相反转和原位聚合方法”构建用于超级电容器的环境友好,灵活,导电的3D支架样多孔电极的新方法。

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