Binder-Free NiS@PPy Nanocomposite Cathode for High-Performance Supercapacitors

Hamza Dunya, R. Taş, M. Gulen, Ebru Koroglu
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Abstract

Industrialization and the increase in the world population increase the need for energy.Supercapacitors are preferred because of their features such as high specific power, long life, environmentalfriendliness, fast charge, and discharge rates. Supercapacitors are divided into two categories as EDLC andpseudo capacitors. Pseudo capacitors use materials that exhibit pseudo capacitance, such as transition metaloxides/sulphides and conductive polymers. Electrochemical studies and synthesis methods of polymerbased metal oxide composites, polyaniline and polypyrrole are examined in detail. Evaluating the variousmethods used in the preparation of supercapacitor electrodes, an idea is presented on the selection ofsuitable materials for electrochemical applications. Conductive polymers have good capacitance behaviorbut low cyclic stability. Transition metal sulfides exhibit electrochemical performance with highcapacitance values and excellent redox reversibility. This study investigates NiS/PPy polymer assupercapacitor electrode material. The NiS structure was synthesized using Na2S and nickel foam. NiS-PPycoating was carried out by electrochemical coating method. Structures were characterized by XRD andSEM, electrochemical studies such as cyclic voltammetry (CV), galvanostatic discharge (GCD) werecarried out. By incorporating NiS into the PPy matrix, the C value was increased from 22.22 to 1404 F g-1
无粘结剂NiS@PPy用于高性能超级电容器的纳米复合阴极
工业化和世界人口的增加增加了对能源的需求。超级电容器具有高比功率、长寿命、环保、快速充电和放电等特点,是首选。超级电容器分为EDLC和伪电容器两类。伪电容器使用具有伪电容的材料,如过渡金属氧化物/硫化物和导电聚合物。详细介绍了聚合物基金属氧化物复合材料、聚苯胺和聚吡咯的电化学研究和合成方法。对制备超级电容器电极的各种方法进行了评价,提出了选择适合电化学应用的材料的思路。导电聚合物具有良好的电容性能,但循环稳定性较低。过渡金属硫化物具有高电容值和优异的氧化还原可逆性的电化学性能。研究了NiS/PPy聚合物作为超级电容器电极材料。采用Na2S和泡沫镍合成了NiS结构。采用电化学涂覆法对nis - ppy进行涂覆。采用XRD和sem对其结构进行了表征,并对其进行了循环伏安(CV)、恒流放电(GCD)等电化学研究。通过将NiS加入到PPy基质中,C值从22.22增加到1404 F -1
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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