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用于增强超级电容器电容的电纺聚丙烯腈-聚苯基/磁铁矿纳米纤维电极

Electrospun polyacrylonitrile-polyphenyl/magnetite nanofiber electrode for enhanced capacitance of supercapacitor.

作者信息

Kenawy El-Refaie, Moharram Youssef I, Abouharga Fatma S, Elfiky Mona

机构信息

Polymer Research Group, Department of Chemistry, Faculty of Science, Tanta University, Tanta, 31527, Egypt.

Analytical and Electrochemistry Research UNIT, Department of Chemistry, Faculty of Science, Tanta University, Tanta, Egypt.

出版信息

Sci Rep. 2025 Apr 28;15(1):14885. doi: 10.1038/s41598-025-97089-x.

Abstract

Supercapacitors are widely valued for their high cycle life, power density, and broad applications. However, the development of improved devicess hindered by the challenges related to electrode materials. Effective electrodes need high specific capacitance and low electrical resistance to enhance energy storage, while also being simple to prepare, cost-effective, and environmentally friendly to support sustainable development. This study utilized an affordable and straightforward electrospinning process to produce polyacrylonitrile (PAN) nanofibers, polyacrylonitrile-polyphenyl (PAN-PPh) nanofibers, and polyacrylonitrile-polyphenyl/magnetic iron oxide (PAN-PPh/FeO) composite nanofibers for supercapacitor electrodes. Among these, the PAN-PPh/FeO electrode exhibited superior performance, with a specific capacity of 0.258 Ah g, and specific capacitance of 442.4 F g and excellent cycling stability, retaining approximately 78.49% of its capacitance after 3000 cycles. These results highlight the potential of PAN-PPh/FeO composites as sustainable materials for supercapacitor electrodes.

摘要

超级电容器因其高循环寿命、功率密度和广泛的应用而受到广泛重视。然而,与电极材料相关的挑战阻碍了性能更优的器件的发展。有效的电极需要高比电容和低电阻来提高能量存储,同时还需易于制备、具有成本效益且环保,以支持可持续发展。本研究采用一种经济且简便的静电纺丝工艺,制备了用于超级电容器电极的聚丙烯腈(PAN)纳米纤维、聚丙烯腈-聚苯(PAN-PPh)纳米纤维以及聚丙烯腈-聚苯/磁性氧化铁(PAN-PPh/FeO)复合纳米纤维。其中,PAN-PPh/FeO电极表现出卓越的性能,比容量为0.258 Ah g,比电容为442.4 F g,并且具有出色的循环稳定性,在3000次循环后仍保留约78.49%的电容。这些结果凸显了PAN-PPh/FeO复合材料作为超级电容器电极可持续材料的潜力。

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