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Iron Oxide Nanoparticle-Assisted Delamination of Ti 3 C 2 T x MXenes: A New Approach to Produce Magnetic MXene-Based Composites.

Kirill SobolevAlexander OmelyanchikNikolai ShilovMikhail GorshenkovNikolai AndreevAntonio ComiteSawssen SlimaniDavide PeddisYevgeniy A OvchenkovAlexander N VasilievKurban E MagomedovValeria V Rodionova
Published in: Nanomaterials (Basel, Switzerland) (2023)
Ti 3 C 2 T x MXene is one of the most comprehensively studied 2D materials in terms of its adsorptive, transport, and catalytic properties, cytotoxic performance, etc. Still, conventional MXene synthesis approaches provide low single-flake MXene yield and frequently uncontrollable properties, demanding further post-processing. The MXene family also lacks magnetism, which is helpful for producing effective nanoadsorbents as their magnetic decantation is the cheapest and most convenient way to remove the spent adsorbent from water. Composite materials consisting of magnetic nanoparticles grown on top of MXene flakes are commonly used to provide magnetic properties to the resulting nanocomposite. In this paper, we study the possibility to delaminate multilayer Ti 3 C 2 T x MXene sheets directly by growing iron oxide magnetic nanoparticles inside their interlayer spacing. We find out that, with a mass fraction of particles comparable or exceeding that of MXenes, their growth is accompanied by an effective enhancement of single-layer MXene yield and suitable magnetic properties of the resulting composite. The developed approach can be further used for simplifying synthesis protocols to obtain magnetic MXene-based nanoadsorbents with tunable properties.
Keyphrases
  • iron oxide
  • magnetic nanoparticles
  • molecularly imprinted
  • anti inflammatory