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Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol

In this paper, an original method of synthesis of Coil-Brush amphiphilic polystyrene-b-(polyglycidol-g-polyglycidol) (PS-b-(PGL-g-PGL)) block copolymers was developed. The hypothesis that their hydrophilicity and micellization can be controlled by polyglycidol blocks architecture was verified. The r...

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Autores principales: Gadzinowski, Mariusz, Kasprów, Maciej, Basinska, Teresa, Slomkowski, Stanislaw, Otulakowski, Łukasz, Trzebicka, Barbara, Makowski, Tomasz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778311/
https://www.ncbi.nlm.nih.gov/pubmed/35054660
http://dx.doi.org/10.3390/polym14020253
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author Gadzinowski, Mariusz
Kasprów, Maciej
Basinska, Teresa
Slomkowski, Stanislaw
Otulakowski, Łukasz
Trzebicka, Barbara
Makowski, Tomasz
author_facet Gadzinowski, Mariusz
Kasprów, Maciej
Basinska, Teresa
Slomkowski, Stanislaw
Otulakowski, Łukasz
Trzebicka, Barbara
Makowski, Tomasz
author_sort Gadzinowski, Mariusz
collection PubMed
description In this paper, an original method of synthesis of Coil-Brush amphiphilic polystyrene-b-(polyglycidol-g-polyglycidol) (PS-b-(PGL-g-PGL)) block copolymers was developed. The hypothesis that their hydrophilicity and micellization can be controlled by polyglycidol blocks architecture was verified. The research enabled comparison of behavior in water of PS-b-PGL copolymers and block–brush copolymers PS-b-(PGL-g-PGL) with similar composition. The Coil-Brush copolymers were composed of PS-b-PGL linear core with average DP(n) of polystyrene 29 and 13 of polyglycidol blocks. The DP(n) of polyglycidol side blocks of coil–b–brush copolymers were 2, 7, and 11, respectively. The copolymers were characterized by (1)H and (13)C NMR, GPC, and FTIR methods. The hydrophilicity of films from the linear and Coil-Brush copolymers was determined by water contact angle measurements in static conditions. The behavior of Coil-Brush copolymers in water and their critical micellization concentration (CMC) were determined by UV-VIS using 1,6-diphenylhexa-1,3,5-trien (DPH) as marker and by DLS. The CMC values for brush copolymers were much higher than for linear species with similar PGL content. The results of the copolymer film wettability and the copolymer self-assembly studies were related to fraction of hydrophilic polyglycidol. The CMC for both types of polymers increased exponentially with increasing content of polyglycidol.
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spelling pubmed-87783112022-01-22 Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol Gadzinowski, Mariusz Kasprów, Maciej Basinska, Teresa Slomkowski, Stanislaw Otulakowski, Łukasz Trzebicka, Barbara Makowski, Tomasz Polymers (Basel) Article In this paper, an original method of synthesis of Coil-Brush amphiphilic polystyrene-b-(polyglycidol-g-polyglycidol) (PS-b-(PGL-g-PGL)) block copolymers was developed. The hypothesis that their hydrophilicity and micellization can be controlled by polyglycidol blocks architecture was verified. The research enabled comparison of behavior in water of PS-b-PGL copolymers and block–brush copolymers PS-b-(PGL-g-PGL) with similar composition. The Coil-Brush copolymers were composed of PS-b-PGL linear core with average DP(n) of polystyrene 29 and 13 of polyglycidol blocks. The DP(n) of polyglycidol side blocks of coil–b–brush copolymers were 2, 7, and 11, respectively. The copolymers were characterized by (1)H and (13)C NMR, GPC, and FTIR methods. The hydrophilicity of films from the linear and Coil-Brush copolymers was determined by water contact angle measurements in static conditions. The behavior of Coil-Brush copolymers in water and their critical micellization concentration (CMC) were determined by UV-VIS using 1,6-diphenylhexa-1,3,5-trien (DPH) as marker and by DLS. The CMC values for brush copolymers were much higher than for linear species with similar PGL content. The results of the copolymer film wettability and the copolymer self-assembly studies were related to fraction of hydrophilic polyglycidol. The CMC for both types of polymers increased exponentially with increasing content of polyglycidol. MDPI 2022-01-08 /pmc/articles/PMC8778311/ /pubmed/35054660 http://dx.doi.org/10.3390/polym14020253 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gadzinowski, Mariusz
Kasprów, Maciej
Basinska, Teresa
Slomkowski, Stanislaw
Otulakowski, Łukasz
Trzebicka, Barbara
Makowski, Tomasz
Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title_full Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title_fullStr Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title_full_unstemmed Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title_short Synthesis, Hydrophilicity and Micellization of Coil-Brush Polystyrene-b-(polyglycidol-g-polyglycidol) Copolymer—Comparison with Linear Polystyrene-b-polyglycidol
title_sort synthesis, hydrophilicity and micellization of coil-brush polystyrene-b-(polyglycidol-g-polyglycidol) copolymer—comparison with linear polystyrene-b-polyglycidol
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778311/
https://www.ncbi.nlm.nih.gov/pubmed/35054660
http://dx.doi.org/10.3390/polym14020253
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