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Zhurnal Tekhnicheskoi Fiziki, 2024 Volume 94, Issue 3, Pages 497–506 (Mi jtf6742)

XI International Symposium ''Optics and Biophotonics'' (Saratov Fall Meeting 2023), Saratov, 25-29 September 2023
Physical electronics

Laser-stimulated metal-induced crystallization of silicon coatings on film and nanofiber polymer substrates

A. A. Serdobintsev, A. M. Kartashova, P. Demina, L. D. Volkovoynova, I. O. Kozhevnikov, V. V. Galushka

Saratov State University, 410012 Saratov, Russia

Abstract: The development of basic technological approaches to the creation of flexible electronic devices is an actual problem nowadays. This paper presents the results of forming nanocrystalline silicon coatings on various kinds of flexible polymer substrates. The coatings were obtained by laser-stimulated metal-induced crystallization. Fully crystallized silicon films on an area of 30 $\times$ 30 $\mu$m on a polyimide film substrate using this technique were obtained. The applicability of this technique to the silicon coating on a nanofiber polymer substrate obtained by electrospinning is demonstrated. The range of laser fluence value which leads to the crystallization of silicon with minimal damage to nanofiber substrates has been determined. The degree of damage to the substrates was assessed using scanning electron microscopy. The results of experimental studies confirming the formation of crystallized silicon coatings on nanofiber polymer substrates are presented.

Keywords: flexible electronics, metal-induced silicon crystallization, laser-induced silicon crystallization, infrared laser, nanofiber nonwovens.

Received: 16.01.2023
Revised: 16.01.2023
Accepted: 16.01.2023

DOI: 10.61011/JTF.2024.03.57390.319-23



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