Dual-surfactant-engineered FeNi3-carbon fabric electrodes for high-performance flexible supercapacitors

  • Joshi, Bhavana; 
  • Khadka, Ashwin; 
  • Song, Zihao; 
  • Gao, Hao; 
  • Samuel, Edmund; 
  • ... Yoon, Sam S.; 
  • 외 4명
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SCOPUS

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초록

Producing flexible, binder-free supercapacitor electrodes from earth-abundant alloys is challenging owing to difficulties in controlling the alloy dispersion and interfacial integration on cotton fabric. This report presents a mixed ionic surfactant-assisted strategy for growing FeNi3 nanoparticles on cotton fabric, followed by high-temperature carbonization to produce flexible FeNi3-carbon composite electrodes. Sodium dodecyl sulfate and cetyltrimethylammonium bromide simultaneously regulate micelle-assisted nucleation, prevent particle agglomeration, and create a conductive carbon framework. The surfactant concentration affects the electrochemical kinetics and charge-transfer performance. The optimized electrode, prepared with 2 mmol of each surfactant, delivers an areal capacitance of 1104.8 mF & sdot;cm-2, capacitance retention of 120% after 20,000 charge-discharge cycles, and energy densities of 153.4 and 66.7 mu Wh & sdot;cm-2 at power densities of 2 and 100 mW & sdot;cm-2, respectively, with dominant surface-controlled pseudocapacitance, low charge-transfer resistance, and sub-millisecond relaxation. Its excellent durability and flexibility make it a promising material for wearable energy-storage applications.

키워드

Dual surfactant; Micelle-mediated; Iron nickel alloy; Wet impregnation; Flexible electrodes
제목
Dual-surfactant-engineered FeNi3-carbon fabric electrodes for high-performance flexible supercapacitors
저자
Joshi, Bhavana; Khadka, Ashwin; Song, Zihao; Gao, Hao; Samuel, Edmund; Aldalbahi, Ali; Periyasami, Govindasami; Cui, Sheng; Park, Mira; Yoon, Sam S.
DOI
10.1016/j.jallcom.2026.188487
발행일
2026-06-15
유형
Article
저널명
Journal of Alloys and Compounds
권
1071