Recycling waste for energy: Reusing methyl orange dye-adsorbed polythiophene/Fe3O4 nanorods/reduced graphene oxide nanocomposite as a supercapacitor electrode

  • Husain, Ahmad; 
  • Ali, Asim; 
  • Alqarni, Sara A.; 
  • Ansari, Khalid; 
  • Danish, Mohtaram; 
  • ... Kang, Kyeong Tae; 
  • 외 5명
Citations

WEB OF SCIENCE

16
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SCOPUS

38

초록

This study presents a sustainable waste-to-wealth approach by repurposing methyl orange (MO) dye-adsorbed polythiophene/iron oxide/reduced graphene oxide nanocomposite (PTh/Fe3O4/RGO) for dual functionality in wastewater treatment and energy storage. PTh/Fe3O4/RGO nanocomposite was initially employed as an effective adsorbent to remove harmful MO dye from wastewater. After successful adsorption, the dye-saturated PTh/ Fe3O4/RGO was repurposed as a supercapacitor electrode to investigate its energy storage capabilities. Electrochemical tests before MO adsorption revealed that the pristine PTh/Fe3O4/RGO electrode demonstrated promising performance with a specific capacitance of 467.3 Fg- 1 at 1 Ag- 1 and excellent cyclic stability of 95.3% retention over 5000 Galvanostatic charge-discharge (GCD) cycles. Further, the maximum adsorption of MO by the PTh/Fe3O4/RGO was achieved under optimal conditions: pH 3, 2.5 gL- 1 dosage, 120 min contact time, and 50 mgL- 1 MO concentration. The adsorption behaviour was well-explained by the Langmuir isotherm, pseudosecond-order kinetics, and Dubinin-Radushkevich (D-R) isotherm, indicating a physical adsorption process with a monolayer capacity of 151.34 mgg-1. Thermodynamic analysis, with a positive enthalpy (Delta H degrees) and negative Gibbs free energy (Delta G degrees), confirmed that the process is endothermic and spontaneous. Desorption studies showed that 88.72% of the MO could be desorbed in the first cycle, with effective regeneration up to six cycles using NaOH. Post-adsorption, the material still retained significant supercapacitor properties, with a specific capacitance of 380.9 Fg- 1 at 1 Ag- 1 and 83.2% cyclic stability over 5000 GCD cycles. This study demonstrates a circular, sustainable approach that integrates waste treatment with energy storage, highlighting the potential of reusing materials for multifunctional applications.

키워드

Methyl orange adsorption; Energy storage; Supercapacitor electrode; Waste-to-wealth concept; Circular sustainability; ELECTRICAL-CONDUCTIVITY; CHARGE-TRANSPORT; PERFORMANCE; POLYANILINE; FABRICATION; ADSORPTION; EXTRACTION
제목
Recycling waste for energy: Reusing methyl orange dye-adsorbed polythiophene/Fe3O4 nanorods/reduced graphene oxide nanocomposite as a supercapacitor electrode
저자
Husain, Ahmad; Ali, Asim; Alqarni, Sara A.; Ansari, Khalid; Danish, Mohtaram; Gunnasegaran, Prem; Kanan, Mohammad; Giri, Jayant; Kandasamy, M.; Khan, M. M. A.; Kang, Kyeong Tae
DOI
10.1016/j.jsamd.2025.100865
발행일
2025-06
유형
Article
저널명
Journal of Science: Advanced Materials and Devices
권
10
호
2