Boahene Stephen, Potocký Štěpán, Aubrechtová Dragounová Kateřina, Szabó Ondrej, Tomšík Elena, Kromka Alexander
Czech Technical University in Prague, Faculty of Electrical Engineering, Technická 1902/2, Prague 6 166 27, Czech Republic.
Institute of Physics of the Czech Academy of Sciences, Cukrovarnická 10, Prague 6 162 00, Czech Republic.
ACS Omega. 2025 May 13;10(20):20844-20853. doi: 10.1021/acsomega.5c02109. eCollection 2025 May 27.
This study presents polyaniline (PANI) synthesis and characterization by using a novel acid-assisted polymerization technique. Two PANI suspensions with different ammonium peroxydisulfate (APS) concentrations were synthesized at room temperature; i.e., the ratio of aniline to APS was 10:1 for PANI1 and 5:1 for PANI2. SEM measurements revealed distinct structures: a porous nanofibrillar structure for PANI1 and a densely packed structure for PANI2. The electrochemical performance of the fabricated PANI/glassy carbon (GC) electrodes was evaluated using a three-electrode cell configuration at scan rates of 10 and 30 mV/s. The PANI1/GC heterostructure exhibited a specific capacitance of 160 F/g, while this value increased to 407 F/g for the PANI2/GC. This research contributes not only to the understanding of PANI synthesis at room temperature but also to its potential applications in electrochemical energy storage devices.
本研究介绍了采用新型酸辅助聚合技术合成和表征聚苯胺(PANI)的方法。在室温下合成了两种过硫酸铵(APS)浓度不同的聚苯胺悬浮液;即,对于PANI1,苯胺与APS的比例为10:1,对于PANI2,该比例为5:1。扫描电子显微镜(SEM)测量揭示了不同的结构:PANI1为多孔纳米纤维结构,PANI2为紧密堆积结构。使用三电极电池配置在10和30 mV/s的扫描速率下评估了制备的聚苯胺/玻碳(GC)电极的电化学性能。PANI1/GC异质结构表现出160 F/g的比电容,而对于PANI2/GC,该值增加到407 F/g。这项研究不仅有助于理解室温下聚苯胺的合成,还有助于其在电化学储能装置中的潜在应用。