Porous aluminum supported carbon nanotubes-based 2.7 V supercapacitor for AC filtering
作者:Ecem Erman, Nayereh Soltani, Raghunandan Ummethala, Per Alfred Øhlckers, Kaiying Wang, Xuyuan Chen, Pai Lu · 发表于:Electrochemistry Communications · 年份:2025 · DOI:10.1016/j.elecom.2025.107914 · 被引用次数:4 · 研究领域:Supercapacitor Materials and Fabrication、Advanced Battery Technologies Research、Advanced battery technologies research
Supercapacitor is a promising solution for alternating current (AC) filtering to result in miniaturized electronic devices by virtue of its much higher specific capacitance than conventional mainstream electrolytic capacitors. Here, this work reports a novel electrode design for satisfying the high frequency response requirement of AC filtering based on the growth of carbon nanotube (CNT) electrode materials onto the pre-etched porous aluminum substrate, via an atmospheric pressure chemical vapor deposition (APCVD) method. The developed supercapacitors with such CNT electrodes displayed a high areal specific capacitance of 586 μF cm − 2 , a phase angle of −80°, and a resistor-capacitor (RC) time constant of 0.232 milliseconds (ms) at 120 Hz, demonstrating both improved areal capacitance and the high frequency handling capability. More importantly, a wide voltage window (2.7 V) is promised by the utilization of a commercial organic electrolyte, which is benefiting to boost the energy density and facilitate the design of high voltage filtering device in comparison with the most reported aqueous filtering supercapacitors. • A 2.7 V supercapacitor developed for AC filtering applications • A novel electrode design: carbon nanotube network on macroporous aluminum • Clean and all dry fabrication of the supercapacitor electrodes • High areal capacitance of 586 μF cm −2 and a phase angle of −80° at 120 Hz