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JOURNALS // Zhurnal Tekhnicheskoi Fiziki // Archive

Zhurnal Tekhnicheskoi Fiziki, 2022 Volume 92, Issue 9, Pages 1382–1386 (Mi jtf7440)

This article is cited in 1 paper

Physical science of materials

Formation of (Co$_{40}$Fe$_{40}$B$_{20}$)$_x$(LiNbO$_3$)$_{100-x}$ composite film on a metallic substrate

A. V. Sitnikovab, I. V. Babkinaa, Yu. E. Kalinina, A. E. Nikonova, M. N. Kopytina, A. R. Shakurova, O. I. Remizovaa, L. I. Yanchenko

a Voronezh State Technical University, 394026 Voronezh, Russia
b National Research Centre "Kurchatov Institute", 123182 Moscow, Russia

Abstract: The topological features of the formation of (Co$_{40}$Fe$_{40}$B$_{20}$)$_{15}$(LiNbO$_3$)$_{85}$ composite films deposited by ion-beam method on a metal electrode Cr/Cu/Cr has been investigated. The presence of a dielectric layer between the upper Cr layer and the CoFe–LiNbO$_3$ film with a thickness of $d_{ox}\approx$ 15 nm has been established. The difference in the size of granules near the amorphous layer and in the volume of the film has been shown. A model of the formation of (Co$_{40}$Fe$_{40}$B$_{20}$)$_x$(LiNbO$_3$)$_{100-x}$ nanocomposite film at the initial stage of growth has been proposed. It has been shown that the formation of $\alpha$-LiNbO$_3$ layer on the chrome metal film surface is possible with the realization of island and layer-by-layer growth mechanisms for various phases of the composite.

Keywords: nanocomposite, growth mechanisms, self-organization, structure.

Received: 11.04.2022
Revised: 11.05.2022
Accepted: 12.05.2022

DOI: 10.21883/JTF.2022.09.52930.94-22



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