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June 17, 2025Nano-Horizons Journal of Nanosciences and Nanotechnologies

Exploring the Potential of Co3O4@MnO2@ZnO Enhanced with Vitex Doniana Leaf Extract for Supercapacitor Electrode Applications

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Authors

RORaphael M. ObodoHNHope E. NsudeSESabastine C. Ezike

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Overview

Experimental analysis reveals Co3O4@MnO2@ZnO composites with Vitex doniana extract enhance supercapacitor performance, indicating promising applications in energy storage.

Key Points

  • Co3O4@MnO2@ZnO composites with Vitex doniana extract achieved specific capacitances of 1,215 F/g and 1,250 F/g at different testing methods, demonstrating high performance.
  • The stability of the composite electrode was notable with a 97.25% retention rate after 10,000 complete cycles, indicating long-term usability.
  • Production of the electrode material utilized the chemical bath deposition technique, showcasing an innovative approach to electrode development.
  • The research highlights the potential of using transition metal oxides as effective materials for supercapacitor applications, addressing energy storage needs.

Cite This Study

Obodo et al. (2025) studied this question.

synapsesocial.com/papers/68af55dead7bf08b1eadcc51https://doi.org/10.25159/3005-2602/16295
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Also Consider

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  3. 3Electrochemical performance and ex situ analysis of ZnMn2O4 nanowires as anode materials for lithium rechargeable batteries2011 · 195 citations