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Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator

This work presents the results of research on the preparation of bioresorbable functional polyestercarbonates containing side carboxyl groups. These copolymers were synthesized in two ways: the classic two-step process involving the copolymerization of L-lactide and a cyclic carbonate containing a b...

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Autores principales: Jaworska, Joanna, Sobota, Michał, Pastusiak, Małgorzata, Kawalec, Michał, Janeczek, Henryk, Rychter, Piotr, Lewicka, Kamila, Dobrzyński, Piotr
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839564/
https://www.ncbi.nlm.nih.gov/pubmed/35160492
http://dx.doi.org/10.3390/polym14030503
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author Jaworska, Joanna
Sobota, Michał
Pastusiak, Małgorzata
Kawalec, Michał
Janeczek, Henryk
Rychter, Piotr
Lewicka, Kamila
Dobrzyński, Piotr
author_facet Jaworska, Joanna
Sobota, Michał
Pastusiak, Małgorzata
Kawalec, Michał
Janeczek, Henryk
Rychter, Piotr
Lewicka, Kamila
Dobrzyński, Piotr
author_sort Jaworska, Joanna
collection PubMed
description This work presents the results of research on the preparation of bioresorbable functional polyestercarbonates containing side carboxyl groups. These copolymers were synthesized in two ways: the classic two-step process involving the copolymerization of L-lactide and a cyclic carbonate containing a blocked side carboxylate group in the form of a benzyl ester (MTC-Bz) and its subsequent deprotection, and a new way involving the one-step copolymerization of L-lactide with this same carbonate, but containing an unprotected carboxyl group (MTC-COOH). Both reactions were carried out under identical conditions in the melt, using a specially selected zinc chelate complex, with Zn [(acac)(L)H(2)O] (where: L-N-(pyridin-4-ylmethylene) phenylalaninate ligand) as an initiator. The differences in the kinetics of both reactions and their courses were pictured. The reactivity of the MTC-COOH monomer without a blocking group in the studied co-polymerization was much higher, even slightly higher than L-lactide, which allowed the practically complete conversion of the comonomers in a much shorter time. The basic final properties of the obtained copolymers and the microstructures of their chains were determined. The single-step synthesis of biodegradable polyacids was much simpler. Contrary to the conventional method, this made it possible to obtain copolymers containing all carbonate units with carboxyl groups, without even traces of the heavy metals used in the deprotection of the carboxyl groups, the presence of which is known to be very difficult to completely remove from the copolymers obtained in the two-step process.
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spelling pubmed-88395642022-02-13 Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator Jaworska, Joanna Sobota, Michał Pastusiak, Małgorzata Kawalec, Michał Janeczek, Henryk Rychter, Piotr Lewicka, Kamila Dobrzyński, Piotr Polymers (Basel) Article This work presents the results of research on the preparation of bioresorbable functional polyestercarbonates containing side carboxyl groups. These copolymers were synthesized in two ways: the classic two-step process involving the copolymerization of L-lactide and a cyclic carbonate containing a blocked side carboxylate group in the form of a benzyl ester (MTC-Bz) and its subsequent deprotection, and a new way involving the one-step copolymerization of L-lactide with this same carbonate, but containing an unprotected carboxyl group (MTC-COOH). Both reactions were carried out under identical conditions in the melt, using a specially selected zinc chelate complex, with Zn [(acac)(L)H(2)O] (where: L-N-(pyridin-4-ylmethylene) phenylalaninate ligand) as an initiator. The differences in the kinetics of both reactions and their courses were pictured. The reactivity of the MTC-COOH monomer without a blocking group in the studied co-polymerization was much higher, even slightly higher than L-lactide, which allowed the practically complete conversion of the comonomers in a much shorter time. The basic final properties of the obtained copolymers and the microstructures of their chains were determined. The single-step synthesis of biodegradable polyacids was much simpler. Contrary to the conventional method, this made it possible to obtain copolymers containing all carbonate units with carboxyl groups, without even traces of the heavy metals used in the deprotection of the carboxyl groups, the presence of which is known to be very difficult to completely remove from the copolymers obtained in the two-step process. MDPI 2022-01-27 /pmc/articles/PMC8839564/ /pubmed/35160492 http://dx.doi.org/10.3390/polym14030503 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
Jaworska, Joanna
Sobota, Michał
Pastusiak, Małgorzata
Kawalec, Michał
Janeczek, Henryk
Rychter, Piotr
Lewicka, Kamila
Dobrzyński, Piotr
Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title_full Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title_fullStr Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title_full_unstemmed Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title_short Synthesis of Polyacids by Copolymerization of L-Lactide with MTC-COOH Using Zn[(acac)(L)H(2)O] Complex as an Initiator
title_sort synthesis of polyacids by copolymerization of l-lactide with mtc-cooh using zn[(acac)(l)h(2)o] complex as an initiator
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839564/
https://www.ncbi.nlm.nih.gov/pubmed/35160492
http://dx.doi.org/10.3390/polym14030503
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