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Zhurnal Tekhnicheskoi Fiziki, 2023 Volume 93, Issue 10, Pages 1440–1446 (Mi jtf7109)

Physical science of materials

Investigation of the dielectric properties of polymer-dispersive liquid-crystal films dopated with silicon dioxide nanoparticles

T. A. Chimytovab, A. V. Nomoevba, D. Zh. Bazarovabc, S. V. Kalashnikovab

a Institute of Physical Materials Science, Siberian Branch of the Russian Academy of Sciences, Ulan-Ude, Russia
b Buryat State University, Ulan-Ude, Russia
c Buryat Republican Institute of Educational Policy, Ulan-Ude

Abstract: In this work, a measuring system was developed according to the scheme of an AC bridge, with the help of which a constant voltage was applied to polymer-dispersed liquid-crystal films doped with silicon dioxide nanoparticles. For these cells with different content of silicon dioxide nanoparticles, capacitance-voltage measurements were carried out at different frequencies of the alternating voltage generator. For these cells, a memory effect was found, which manifests itself in the hysteresis behavior of the capacitance of these cells. The largest hysteresis area and the largest shift of the cell capacitance in the absence of an external field are observed at 10 kHz. In the entire region under study, with a minimum at a frequency of 10 kHz, the perpendicular component of the permittivity has a pronounced dispersion. It has been established that the content of silicon dioxide nanoparticles affects the permittivity of a polymer-dispersed liquid-crystal cell. The data obtained can be used in the development of energy-independent nanostructured data storage systems.

Keywords: polymer-dispersed liquid crystal films, silicon dioxide nanoparticles, memory effect, capacitance-voltage characteristic, dispersion.

Received: 17.01.2023
Revised: 28.07.2023
Accepted: 25.08.2023

DOI: 10.61011/JTF.2023.10.56282.7-23



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