Utilization of Co2+ doped Eu2O3 nanostructures and their effect on the dielectric and photoisomerization of liquid crystalsopen access
- Authors
- Manhas, Nidhi; Adimule, Vinayak; Lakshminarayana, Parashuram; Keri, Rangappa; Kumar, Lalita S.; Bathula, Chinna
- Issue Date
- Oct-2023
- Publisher
- AIP Publishing
- Keywords
- Europium Compounds; Light Absorption; Nanostructures; Scanning Electron Microscopy; Semiconductor Doping; X Ray Photoelectron Spectroscopy; Bimetallic Oxides; Cis-trans Photoisomerization; Coprecipitation Method; Liquid Crystalline; Liquid-crystals; Oxazoles; Oxide Nanostructures; Photoisomerizations; Synthesised; X-ray Photoelectrons; Liquid Crystals
- Citation
- Physics of Fluids, v.35, no.10, pp 1 - 14
- Pages
- 14
- Indexed
- SCIE
SCOPUS
- Journal Title
- Physics of Fluids
- Volume
- 35
- Number
- 10
- Start Page
- 1
- End Page
- 14
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/21025
- DOI
- 10.1063/5.0171578
- ISSN
- 1070-6631
1089-7666
- Abstract
- In this study, the effect of Co2+ (x):Eu2O3 (x 1/4 5, 10 wt. %) bimetallic oxide nanostructures (NS) on dielectric and cis-trans photoisomerization of liquid crystals (LC) has been studied. First, the Co2 & thorn;:Eu2O3 NS were synthesized by facile coprecipitation method, and then the assynthesized NS were characterized by x-ray diffraction, scanning electron microscopy, x-ray photoelectron spectroscopy, Brunauer Emmett Teller, and UV-visible analytical techniques. New composite structures were prepared by doping Co2+:Eu2O3 (5, 10 wt. %) over liquid crystal (LC) molecules (compounds 4 and 5) containing oxazole moiety. Optical absorption spectra of liquid crystalline NS (LCNS) showed a maximum absorption peak (lambda(max)) between 350 and 450 nm. A significant improvement in the dielectric constants (E' and E") was noticed for LC4 (compound 4)/LC-5 (compound 5) doped with Co2+ (10 wt. %):Eu2O3 NS. The photoisomerization studies of the Co2+ (10 wt. %):Eu2O3 doped to LC-5 (LCNS-2) containing oxazole moiety showed enhanced properties in solution and exhibited photoisomerization in 40 s whereas reverse process (thermal back relaxation) takes 358 s. Furthermore, it was observed that semiconductor NS especially Co2+ (10 wt. %):Eu2O3 NS doped LC-compounds showed enhanced dielectric and photoisomerization properties and can be a potential candidate for optoelectronics and photonic applications.
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Collections - College of Engineering > Department of Electronics and Electrical Engineering > 1. Journal Articles

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