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Article

Structural, Mechanical, and Optical Properties of Laminate-Type Thin Film SWCNT/SiOxNy Composites

1
Department of Materials and Environmental Technology, School of Engineering, Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia
2
Department of Mechanical & Industrial Engineering, School of Engineering, Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia
3
Institute of Physics, University of Tartu, W. Ostwaldi 1, 50411 Tartu, Estonia
4
School of Chemical Engineering, Aalto University, Kemistintie 1, 02150 Espoo, Finland
*
Author to whom correspondence should be addressed.
Nanomaterials 2024, 14(22), 1806; https://doi.org/10.3390/nano14221806
Submission received: 29 September 2024 / Revised: 7 November 2024 / Accepted: 8 November 2024 / Published: 11 November 2024

Abstract

The development of new encapsulating coatings for flexible solar cells (SCs) can help address the complex problem of the short lifespan of these devices, as well as optimize the technological process of their production. In this study, new laminate-type protective composite coatings were prepared using a silicon oxynitride thin-film matrix obtained by curing the pre-ceramic polymer perhydropolysilazane (PHPS) through two low-temperature methods: (i) thermal annealing at 180 °C and (ii) exposure to UV radiation at wavelengths of 185 and 254 nm. Single-walled carbon nanotubes (SWCNTs) were used as fillers via dry transfer, facilitating their horizontal orientation within the matrix. The optical, adhesive, and structural properties of the matrix films and SiOxNy/SWCNT composite coatings, along with their long-term stability, were studied using Fourier transform infrared spectroscopy (FTIR), UV-Vis spectroscopy, HR-SEM, spectral ellipsometry, and a progressive-load scratch test. In this work, the optical constants of PHPS-derived films were systematically studied for the first time. An antireflection effect was observed in the composites revealing their two-component nature associated with (i) the refractive index of the SiOxNy matrix film and (ii) the embedding of a SWCNT filler into the SiOxNy matrix. The curing method of PHPS was shown to significantly affect the resulting properties of the films. In addition to being used as protective multifunctional coatings for SCs, both SiOxNy/SWCNT composites and SiOxNy matrix films also function as broadband optical antireflective coatings. Furthermore, due to the very low friction coefficients observed in the mechanical tests, they show potential as scratch resistant coatings for mechanical applications.
Keywords: barrier protective coating; carbon nanotube network; polysilazane; transparent optical thin films; nanocomposite coating barrier protective coating; carbon nanotube network; polysilazane; transparent optical thin films; nanocomposite coating

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MDPI and ACS Style

Shmagina, E.; Antonov, M.; Kasikov, A.; Volobujeva, O.; Khabushev, E.M.; Kallio, T.; Bereznev, S. Structural, Mechanical, and Optical Properties of Laminate-Type Thin Film SWCNT/SiOxNy Composites. Nanomaterials 2024, 14, 1806. https://doi.org/10.3390/nano14221806

AMA Style

Shmagina E, Antonov M, Kasikov A, Volobujeva O, Khabushev EM, Kallio T, Bereznev S. Structural, Mechanical, and Optical Properties of Laminate-Type Thin Film SWCNT/SiOxNy Composites. Nanomaterials. 2024; 14(22):1806. https://doi.org/10.3390/nano14221806

Chicago/Turabian Style

Shmagina, Elizaveta, Maksim Antonov, Aarne Kasikov, Olga Volobujeva, Eldar M. Khabushev, Tanja Kallio, and Sergei Bereznev. 2024. "Structural, Mechanical, and Optical Properties of Laminate-Type Thin Film SWCNT/SiOxNy Composites" Nanomaterials 14, no. 22: 1806. https://doi.org/10.3390/nano14221806

APA Style

Shmagina, E., Antonov, M., Kasikov, A., Volobujeva, O., Khabushev, E. M., Kallio, T., & Bereznev, S. (2024). Structural, Mechanical, and Optical Properties of Laminate-Type Thin Film SWCNT/SiOxNy Composites. Nanomaterials, 14(22), 1806. https://doi.org/10.3390/nano14221806

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