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March 19, 2026Zeitschrift für Physikalische Chemie3 citations

Metal oxide/MXene nanocomposites for supercapacitor and photocatalytic applications: A review

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MAM. AyyarYSYasodharan ShanmugamJVJeevitha Vijayakumar

Key Points

  • The aim is to analyze synthesis methods and performance of metal oxide/MXene nanocomposites in energy storage and environmental remediation.
  • Reviewed various synthesis methods of metal oxide/MXene nanocomposites.
  • Compared performance metrics in photocatalytic systems and supercapacitors.
  • Evaluated electrochemical properties and degradation efficiencies of specific composites.
  • NiO/MXene nanocomposites achieve a specific capacitance of 770C g−1 with over 97% stability.
  • CuO/MXene and ZnO/MXene demonstrate over 90% degradation of methylene blue and methyl orange in visible light.
  • Enhanced charge transport and interfacial contact lead to improved overall performance.

Abstract

Abstract MXenes are quickly intensifying family of two-dimensional transition metal carbides/nitrides, that have gained significant attention for its metallic conductivity, tunable surface terminations, and hydrophilic morphology. This review provides an overview of the significant synthesis methods of metal oxide/MXene nanocomposites and speaks of their improved performance in photocatalytic systems and supercapacitors. The metal oxides like CuO, Cu 2 O, ZnO and NiO anchored to MXene sheets exhibit enhanced charge transport, interfacial contact, and active-site accessibility. Electrochemical experiments have been reported to indicate that NiO/MXene nanocomposites provide very high specific capacitance of 770C g −1 with outstanding cycling stability (>97 % retention). Photocatalytic systems such as CuO/MXene and ZnO/MXene have much better degradation efficiencies, 90 % of methylene blue degradation in 80 min and over 90 % of methyl orange degradation in the presence of visible light and solar energy respectively. These improvements are attributed to the good band alignment, fast separation of electrons and holes, and heterojunction interfaces. In general, metal oxide/MXene nanocomposites have a high supercapacitor efficiency and photocatalytic environmental remediation potential.

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Cite This Study

Ayyar et al. (2026) studied this question.

synapsesocial.com/papers/69bb9321496e729e6298103chttps://doi.org/10.1515/zpch-2025-0117
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