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Synergistic energy storage of cobalt manganese oxide/vanadium carbide MXene with graphene quantum dots hybrid composite for electrochemical and hydrogen evolution reaction applications

  • 01-12-2025
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Abstract

This article delves into the development and evaluation of a novel hybrid composite material consisting of cobalt manganese oxide (CoMn2O4), vanadium carbide MXene (V2CTx), and graphene quantum dots (GQDs). The study focuses on the synthesis and characterization of this composite, highlighting its exceptional electrochemical properties. Key topics include the synthesis methods for each component, the structural and morphological analysis using techniques like XRD, FTIR, SEM, and XPS, and the electrochemical performance evaluated through CV, GCD, and EIS. The article also explores the hydrogen evolution reaction (HER) performance of the composite, comparing it with standard materials like Pt/C. The results demonstrate that the CoMn2O4/V2CTx@GQDs composite exhibits superior specific capacity, energy density, and power density, making it a promising candidate for advanced energy storage systems and hydrogen evolution applications. The study concludes with a detailed discussion on the stability and durability of the composite, underscoring its potential for real-world applications.

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Title
Synergistic energy storage of cobalt manganese oxide/vanadium carbide MXene with graphene quantum dots hybrid composite for electrochemical and hydrogen evolution reaction applications
Authors
Muhammad Ashraf
Afaf Khadr Alqorashi
M.W.Iqbal
Muhammad Arslan
Summaira khan
Abhinav Kumar
Heba A. El-Sabban
M. A. Diab
Nermin A
Omar Ramzan
Ankit Dilipkumar Oza
Publication date
01-12-2025
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 34/2025
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-025-16178-9
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