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Cobalt- and nickel-modified zinc ferrites for energy storage applications

  • Ameer Hamza,
  • Sofia Javed,
  • Varda Shakeel

摘要

Zinc ferrite (ZnFe2O4) and its derivatives, zinc-nickel ferrite (Zn0.5Ni0.5Fe2O4), and zinc cobalt ferrite (Zn0.5Co0.5Fe2O4) have garnered substantial attention as promising candidates for supercapacitor electrodes due to their exceptional combination of high electrical conductivity and chemical stability. This study presents the synthesis of ZnFe2O4, Zn0.5Ni0.5Fe2O4, and Zn0.5Co0.5Fe2O4 nanoparticles utilizing the co-precipitation technique, followed by a comprehensive characterization employing X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy, and Raman spectroscopy. The electrochemical behavior of the nanoparticles was rigorously investigated using cyclic voltammetry, galvanostatic charge–discharge analysis, and dielectric spectroscopy. The obtained results confirmed the presence of a spinel crystal structure within the nanoparticles, underscoring their commendable electrochemical performance. Considering the combined outcomes, these findings strongly advocate for the potential applicability of ZnFe2O4, Zn0.5Ni0.5Fe2O4, and Zn0.5Co0.5Fe2O4 nanoparticles as promising supercapacitor electrodes. This investigation contributes to the expanding knowledge base regarding advanced electrode materials for energy storage applications and sets the stage for further in-depth exploration and optimization of these distinctive ferrite-based nanoparticulate systems.