Cigarette filter butts-derived activated carbon with free binder electrode design for solid-state supercapacitor application

Q3 Engineering
Yanuar Hamzah, E. Taer, A. Apriwandi, F. L. Supian, N. Mozaffari, N. Mozaffari
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引用次数: 0

Abstract

The aim of this research is to formulate activated carbon monolith from hazardous waste of cigarette filter butts (CFB) for electrode material monolith design in solid-state supercapacitor application. Potassium hydroxide (KOH) was selected for activation. The ratio of CFB to KOH varied in terms of weight between 1:2 and 1:4, thereby obtaining activated cigarette filter carbon (ACFC). The carbon that has been obtained is designed to be solidly in the form of an additive-free monolith. Monolith-activated carbon is physically characterized to examine thermal decomposition profiles (pre-carbonized), structure, composition, morphology, surface area adsorption, and electrochemical measurements. The optimum precursor was marked with high wettability with self-O-doped of 5.44%.in carbon content of 94.56%. Activated carbon electrodes prepared from ACFCs showed an optimum specific capacitance of ~87.17 F g-1, which is a more ecologically responsible method of producing supercapacitors.
用于固态超级电容器应用的烟头滤嘴衍生活性炭与游离粘合剂电极设计
本研究的目的是利用香烟过滤嘴(CFB)的危险废物配制活性炭单体,用于固态超级电容器应用中的电极材料单体设计。活化时选用氢氧化钾(KOH)。CFB 与 KOH 的重量比在 1:2 和 1:4 之间变化,从而获得了活性香烟过滤嘴碳(ACFC)。所获得的碳被设计成固体形式,不含添加剂。对单片活性炭进行物理表征,以检查热分解曲线(预碳化)、结构、成分、形态、表面积吸附和电化学测量。最佳前驱体具有高润湿性,自掺杂 5.44%,含碳量为 94.56%。用 ACFCs 制备的活性炭电极显示出 ~87.17 F g-1 的最佳比电容,这是一种更环保的生产超级电容器的方法。
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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来源期刊
Communications in Science and Technology
Communications in Science and Technology Engineering-Engineering (all)
CiteScore
3.20
自引率
0.00%
发文量
13
审稿时长
24 weeks
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