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Fabrication Methods, Structural, Surface Morphology and Biomedical Applications of MXene: A Review. | LitMetric

Fabrication Methods, Structural, Surface Morphology and Biomedical Applications of MXene: A Review.

ACS Appl Mater Interfaces

Advanced Glass and Glass Ceramic Research Laboratory, Department of Physics, University of Lucknow, Lucknow, Uttar Pradesh 226007, India.

Published: September 2024

AI Article Synopsis

  • Two-dimensional (2-D) layered materials, particularly MXenes (transition metal carbides and nitrides), have shown exceptional properties and are gaining attention for advanced applications in various fields.
  • This review focuses on the synthesis methods, properties, and specific biomedical applications of MXenes, including bioimaging, drug delivery, therapies, and tissue engineering.
  • The article also discusses the challenges faced by MXene-based biomaterials and outlines future prospects to enhance their application in the biomedical field.

Article Abstract

Recently, two-dimensional (2-D) layered materials have revealed outstanding properties and play a crucial role for numerous advanced applications. The emerging transition metal carbides and nitrides, known as MXene with empirical formula MXT, have generated widespread attention and demonstrated impressive potential in various fields. The fabrication of 2-D novel MXene and its composites and their characterizations are applicable to vast applications in different areas such as energy storage, gas sensors, catalysis, and biomedical applications. In this review, the main focus is on the various synthesis methods, their properties, and biomedical applications. This review provides detailed illustrations of MXenes for many biomedical applications, including bioimaging, drug delivery, therapies, biosensors, tissue engineering, and antibacterial reagents. The challenges and future prospects were highlighted in a comprehensive manner, and the existing problems and potential for MXene-based biomaterials were analyzed with the goal of accelerating their use in the biomedical field.

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Source
http://dx.doi.org/10.1021/acsami.4c07894DOI Listing

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