Facile Synthesis of Activated Carbon-Polyaniline Composites as Electrode Material for Application in Supercapacitor

聚苯胺 超级电容器 材料科学 复合材料 活性炭 电极 电化学 化学 聚合物 有机化学 吸附 聚合 物理化学
作者
Viona Lidya Haryati Putri,Nandang Mufti,Jeniva Dinta Nanda Fahreza,Salsabilla Nazla Husna,Silvi Rahmawati Wibowo
出处
期刊:Solid State Phenomena 卷期号:363: 109-118
标识
DOI:10.4028/p-7r1qrp
摘要

Developing energy storage systems has become a significant focus in supporting advancing renewable energy technologies and electric vehicles. Supercapacitors are a critical device in this endeavor, known for their high capacitance and low internal resistance. Although carbon-based supercapacitors have been widely used, they have low energy density. This research addresses the development of activated carbon (AC) and polyaniline (PANi) composite-based supercapacitors to improve the performance of energy storage devices. AC/PANi composites were synthesized in various ratios of (20:80)%, (50:50)%, and (80:20)% using in-situ polymerization method. Supercapacitor electrodes were prepared by mixing AC/PANi composite, acetylene black, and polyvinylidene fluoride (PVDF) with a mass ratio of (80:10:10)%. Furthermore, coin-type supercapacitor cells were assembled using AC/PANi composite electrodes, 1 M Et4NBF4 electrolyte, and polypropylene separator. Supercapacitor performance was evaluated using Cyclic Voltammetry (CV) methods. The results of FTIR analysis showed that the AC/PANi composite was successfully synthesized, with absorption peaks corresponding to the characteristics of AC and PANi. X-ray diffraction patterns showed that the AC/PANi composite exhibited amorphous properties. The CV test results show that the coin cell based on the AC/PANi composite (20%:80%) indicates the highest performance with significant specific capacitance. Thus, supercapacitor electrodes based on the AC/PANi composite show potential as active materials for supercapacitor devices.

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