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ZHURAULIOVA, D. SMILEK, J. PEKAŘ, M.
Original Title
Structural and Transport Properties of Hybrid Hydrogel Based on Sodium Alginate and Polyvinyl Alcohol
Type
conference proceedings
Language
English
Original Abstract
This work is focused on the preparation and subsequent characterization of structural and transport properties of hybrid hydrogels with the double-network structure concerning their application potencial. With regard to already existing research papers, hybrid hydrogels were prepared as a combination of synthetic polymer and natural polysaccharide, such as polyvinyl alcohol and sodium alginate. In the preparation of this gel's hybrid network involved physical cross-linking of PVA by the freeze-thaw method, and ionic cross-linking of sodium alginate by calcium ions. Another part of this work is tailoring of the internal strucutre of hybrid hydrogels with lecithin as a model of the phospholipid bilayer forming the cell membrane or occurring in tissue. Physicochemical methods were used to characterize their visocelastic, swelling and transport properties. Rheology measurements, specifically oscillation and amplitude tests, were used to study these viscoelastic properties. Morphology of the prepared hybrid hydrogels were confirmed by electron mecroscope scanning. Transport and release properties of gel systems were determined by diffusion experiments with the UV-VIS spectrometry detection, in which an organic dye (methylene blue) was used as a model probe.
Keywords
Hybrid network, hydrogel, lecithin, rheology, swelling, SEM, diffusion experiments, internal strucutre
Authors
ZHURAULIOVA, D.; SMILEK, J.; PEKAŘ, M.
Released
30. 11. 2022
Publisher
Vysoké učení technické v Brně, Fakulta chemická
Location
Brno, CZ
ISBN
978-80-214-6117-8
Book
Studentská odborná konference Chemie je život 2022 Sborník abstraktů
Edition number
První
Pages count
1
BibTex
@proceedings{BUT180250, editor="Darya {Zhurauliova} and Jiří {Smilek} and Miloslav {Pekař}", title="Structural and Transport Properties of Hybrid Hydrogel Based on Sodium Alginate and Polyvinyl Alcohol", year="2022", number="První", pages="1", publisher="Vysoké učení technické v Brně, Fakulta chemická", address="Brno, CZ", isbn="978-80-214-6117-8" }