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March 21, 2026ACS Omega7 citationsOpen Access

Catalytic Applications of MXene-Based Materials and Their Derivatives

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NMNur-Sultan MussaSASeitkhan AzatKTKainaubek Toshtay

Key Points

  • This review aims to explore the catalytic capabilities of MXenes and their derivatives for various applications.
  • Analyzed recent developments in MXene-based catalytic systems.
  • Examined surface functionalization techniques and hybridization with materials like MOFs and COFs.
  • Discussed correlations between structure, property, and performance of the materials.
  • MXenes show improved catalytic activity and selectivity due to their unique physicochemical properties.
  • The layered structure and tunable surface terminations enhance charge transfer and stability.
  • Hybridization with other materials leads to better performance in environmental applications.

Abstract

MXenes, a fast-growing family of 2D transition metal carbides and nitrides (Mn+1XnTx), have demonstrated remarkable catalytic potential because of their layered structure, tunable surface terminations, and metallic conductivity. They are perfect for important processes, including CO2 reduction, water splitting, nitrogen fixation, and pollutant degradation because of their special physicochemical characteristics, which allow for effective charge transfer, robust interfacial contacts, and active-site control. Recent developments in MXene-based catalytic systems are highlighted in this review, with a focus on surface functionalization, hybridization with materials such as MOFs, COFs, and carbon nanostructures, and correlations between structure, property, and performance. The discussion outlines how these characteristics lead to improved activity, selectivity, and stability, directing the logical development of catalysts derived from MXene for environmentally friendly and sustainable energy applications.

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Cite This Study

Mussa et al. (2026) studied this question.

synapsesocial.com/papers/69be37726e48c4981c67714dhttps://doi.org/10.1021/acsomega.5c11762
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