FACILE FABRICATION OF TI3C2 MXENE NANOSHEETS AND THEIR PHOTOTHERMAL PROPERTIES

1 ALI Israt
Co-authors:
1 FARAZ UD DIN M. 1,2 KÁLOSI Anna 1,2 ANNUŠOVÁ Adriana 3 LABUDOVÁ Martina 4 SOYKA Yaryna 4 OMASTOVÁ Mária 1,2 JERGEL Matej 1,2 ŠIFFALOVIČ Peter 1,2 MAJKOVÁ Eva
Institutions:
1 Institute of Physics, Slovak Academy of Sciences, Bratislava, Slovakia, EU, fyziisra@savba.sk
2 Centre for Advanced Material Application, Slovak Academy of Sciences, Bratislava, Slovakia, EU, eva.majkova@savba.sk
3 Institute of Virology, Biomedical Research Center, Slovak Academy of Sciences, Bratislava, Slovakia, EU, martina.labudova@savba.sk
4 Polymer Institute, Slovak Academy of Sciences, Bratislava, Slovakia, EU, maria.omastova@savba.sk
Conference:
13th International Conference on Nanomaterials - Research & Application, Orea Congress Hotel Brno, Czech Republic, EU, October 20 - 22, 2021
Proceedings:
Proceedings 13th International Conference on Nanomaterials - Research & Application
Pages:
258-264
ISBN:
978-80-88365-00-6
ISSN:
2694-930X
Published:
22nd November 2021
Proceedings of the conference were published in Scopus.
Metrics:
482 views / 452 downloads
Abstract

Recently discovered two-dimensional (2D) transition metal carbides and nitrides (MXenes) have received tremendous attention because of their unique electrical, optical and chemical properties. These exceptional properties make them a suitable candidate for a variety of applications including multimodal tumor therapy by photothermal effect. In this work, we demonstrate how to reduce the size of 15 µm large Ti3C2 monolayer MXene sheets into ultrasmall 100-160 nm nanosheets by applying consecutive ultrasonication processes. Different microscopic techniques have been used to visualize the formation of ultrasmall single-layer Ti3C2 nanosheets. The as-prepared MXene nanosheets have shown good solubility in water and ethanol. Further, (3-aminopropyl) triethoxysilane (APTES) and poly(3,4-ethylene dioxythiophene) polystyrene sulfonate (PEDOT:PSS) were utilized for surface modification of the MXene nanosheets to open the possibility of subsequent antibody bio-conjugation. Moreover, PEDOT:PSS improved the photothermal conversion performance of the nanosheets as documented by increasing their temperature from 48.6 ºC to 58.1 ºC on irradiation by 808 nm wavelength laser. Further in vivo and in vitro studies will be necessary to optimize the photothermal properties of Ti3C2 nanosheets.

Keywords: Ti3C2 nanosheets, ultrasonication, surface modification, photothermal effect, cell viability

© This is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Scroll to Top