Electrochemical performance of aqueous electrolytes in porous carbon derived cassava peel electrode material-based for sustainable symmetrical supercapacitor

E. Taer, Harahap Eva Wahyuni, A. Apriwandi, Taslim Rika
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Abstract

Electrolytes have been generally recognized as one of the most important components in enhancing the electrochemical performance of supercapacitors. On the other hand, aqueous electrolytes are considered prime candidates for the development of the next generation of symmetric supercapacitors due to their low-cost, environmentally friendly, high ionic conductivity, fine ionic size, and high capacitance. Herein, the symmetrical supercapacitor of the sustainable porous carbon-based electrode material was confirmed through various aqueous electrolytes consisting of neutral, basic, and acidic Na2SO4, KOH, and H2SO4. Activated carbon is obtained from high potential biomass sources of cassava peel waste. Activated carbon synthesis was performed with a comprehensive approach in order to obtain abundant pore structure, high porosity, and improved wettability through a combination of high-temperature chemical and physical activation. in addition, the electrode material is designed to resemble a solid disc without the addition of a synthetic binder. The evaluation of the disc dimensions showed high porosity in the obtained activated carbon. Furthermore, the symmetrical supercapacitor of the optimized electrode material exhibit excellent specific capacitances of 112, 150, and 183 F g-1 at 1 mV s-1 in the electrolytes Na2SO4, KOH, and H2SO4, respectively. In addition, the highest rate capability of 70% was confirmed in the H2SO4 acid electrolyte. Moreover, their coulombic efficiency can be maintained around 89% with low equivalent series resistance 0.21-0.42 ?. Therefore, the activated carbon-based supercapacitor symmetric cell device from cassava peel shows high performance for developing high-performance supercapacitor applications with guaranteed stability in aqueous electrolytes.
多孔碳基木薯皮电极材料中水电解质的电化学性能研究
电解液是提高超级电容器电化学性能的重要组成部分之一。另一方面,水电解质由于其低成本、环保、高离子电导率、细离子尺寸和高电容而被认为是开发下一代对称超级电容器的主要候选者。本文通过中性、碱性和酸性Na2SO4、KOH和H2SO4等不同的水溶液,确定了可持续多孔碳基电极材料的对称超级电容器。活性炭是从木薯皮废料的高潜力生物质资源中获得的。通过高温化学活化和物理活化相结合,以获得丰富的孔隙结构、高孔隙度和改善的润湿性为目的,对活性炭进行了综合合成。此外,电极材料被设计成类似于固体圆盘,而不需要添加合成粘合剂。圆盘尺寸的评价表明,所得活性炭的孔隙率很高。在Na2SO4、KOH和H2SO4电解液中,对称超级电容器在1 mV s-1下的比电容分别为112、150和183 F -1。此外,在H2SO4酸性电解液中,其倍率最高可达70%。此外,它们的库仑效率可以保持在89%左右,等效串联电阻低0.21-0.42 ?因此,由木薯皮制成的活性炭基超级电容器对称电池装置在开发高性能超级电容器应用方面表现出了很高的性能,并保证了其在水性电解质中的稳定性。
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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