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Facile fabrication of AgFeS2nanostructure via hydrothermal route for supercapacitor application

Authors :
Abdullah, Muhammad
Alahmari, Saeed D.
Aman, Salma
Ejaz, Syeda Rabia
Haleem, Yasir A.
Gouadria, Soumaya
Al-Sehemi, Abdullah G.
Henaish, A.M.A.
Ahmad, Zubair
Farid, Hafiz Muhammad Tahir
Source :
Jouranl of Energy Storage; January 2024, Vol. 77 Issue: 1
Publication Year :
2024

Abstract

This study presents the electrochemical performance of AgFeS2as an electrochemical energy storage material, highlighting its notable attributes such as exceptional electrical conductivity and abundant availability. AgFeS2nanostructure was successfully fabricated utilizing single-step hydrothermal technique. Physiochemical characterization and electrochemical characterization, are both performed on the synthesized AgFeS2nanostructure. An AgFeS2sample on a nickel foam substrate was used to investigate the capacitance property of the materials. The Ag and Fe ions provide a synergistic contribution to the redox process that accelerates the electrochemical efficacy of the supercapacitor. An AgFeS2nanostructure in a three-electrode system's galvanometric charge-discharge (GCD) profile showed a large specific capacitance (Cs) of 555 F g−1@ 1 A g−1in the potential range of 0 to 0.7 V(Ag/AgCl) and capacitive retention of 87 % over 7000th in 2.0 M KOH. The symmetric analysis depends on the AgFeS2electrode has a high CSof 331 F g−1at 1 A g−1in an aqueous 2.0 M KOH in a two- electrode system. The AgFeS2electrode-based symmetric supercapacitor has a specific power of 0.261 W kg−1and a specific energy of 45 Wh kg−1. The capacitive results indicates that the AgFeS2electrode is potential candidate for supercapacitor applications and it can also be employed in various fields such as water splitting, water remediation and photocatalysis.

Details

Language :
English
ISSN :
2352152x
Volume :
77
Issue :
1
Database :
Supplemental Index
Journal :
Jouranl of Energy Storage
Publication Type :
Periodical
Accession number :
ejs64698514
Full Text :
https://doi.org/10.1016/j.est.2023.109875