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Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups

Vinyl-addition polynorbornenes are of great interest as versatile templates for the targeted design of polymer materials with desired properties. These polymers possess rigid and saturated backbones, which provide them with high thermal and chemical stability as well as high glass transition tempera...

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Autores principales: Lunin, Artyom O., Andreyanov, Fedor A., Makarov, Igor S., Bermeshev, Maxim V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674773/
https://www.ncbi.nlm.nih.gov/pubmed/38006171
http://dx.doi.org/10.3390/polym15224444
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author Lunin, Artyom O.
Andreyanov, Fedor A.
Makarov, Igor S.
Bermeshev, Maxim V.
author_facet Lunin, Artyom O.
Andreyanov, Fedor A.
Makarov, Igor S.
Bermeshev, Maxim V.
author_sort Lunin, Artyom O.
collection PubMed
description Vinyl-addition polynorbornenes are of great interest as versatile templates for the targeted design of polymer materials with desired properties. These polymers possess rigid and saturated backbones, which provide them with high thermal and chemical stability as well as high glass transition temperatures. Vinyl-addition polymers from norbornenes with bromoalkyl groups are widely used as precursors of anion exchange membranes; however, high-molecular-weight homopolymers from such monomers are often difficult to prepare. Herein, we report the systematic study of vinyl-addition polymerization of norbornenes with various bromoalkyl groups on Pd-catalysts bearing N-heterocyclic carbene ligands ((NHC)Pd-systems). Norbornenes with different lengths of hydrocarbon linker (one, two, and four CH(2) groups) between the bicyclic norbornene moiety and the bromine atom were used as model monomers, while single- and three-component (NHC)Pd-systems were applied as catalysts. In vinyl-addition polymerization, the reactivity of the investigated monomers varied substantially. The relative reactivity of these monomers was assessed in copolymerization experiments, which showed that the closer the bromine is to the norbornene double-bond, the lower the monomer’s reactivity. The most reactive monomer was the norbornene derivative with the largest substituent (with the longest linker). Tuning the catalyst’s nature and the conditions of polymerization, we succeeded in synthesizing high-molecular-weight homopolymers from norbornenes with bromoalkyl groups (M(n) up to 1.4 × 10(6)). The basic physico-chemical properties of the prepared polymers were studied and considered together with the results of vinyl-addition polymerization.
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spelling pubmed-106747732023-11-17 Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups Lunin, Artyom O. Andreyanov, Fedor A. Makarov, Igor S. Bermeshev, Maxim V. Polymers (Basel) Article Vinyl-addition polynorbornenes are of great interest as versatile templates for the targeted design of polymer materials with desired properties. These polymers possess rigid and saturated backbones, which provide them with high thermal and chemical stability as well as high glass transition temperatures. Vinyl-addition polymers from norbornenes with bromoalkyl groups are widely used as precursors of anion exchange membranes; however, high-molecular-weight homopolymers from such monomers are often difficult to prepare. Herein, we report the systematic study of vinyl-addition polymerization of norbornenes with various bromoalkyl groups on Pd-catalysts bearing N-heterocyclic carbene ligands ((NHC)Pd-systems). Norbornenes with different lengths of hydrocarbon linker (one, two, and four CH(2) groups) between the bicyclic norbornene moiety and the bromine atom were used as model monomers, while single- and three-component (NHC)Pd-systems were applied as catalysts. In vinyl-addition polymerization, the reactivity of the investigated monomers varied substantially. The relative reactivity of these monomers was assessed in copolymerization experiments, which showed that the closer the bromine is to the norbornene double-bond, the lower the monomer’s reactivity. The most reactive monomer was the norbornene derivative with the largest substituent (with the longest linker). Tuning the catalyst’s nature and the conditions of polymerization, we succeeded in synthesizing high-molecular-weight homopolymers from norbornenes with bromoalkyl groups (M(n) up to 1.4 × 10(6)). The basic physico-chemical properties of the prepared polymers were studied and considered together with the results of vinyl-addition polymerization. MDPI 2023-11-17 /pmc/articles/PMC10674773/ /pubmed/38006171 http://dx.doi.org/10.3390/polym15224444 Text en © 2023 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
Lunin, Artyom O.
Andreyanov, Fedor A.
Makarov, Igor S.
Bermeshev, Maxim V.
Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title_full Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title_fullStr Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title_full_unstemmed Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title_short Vinyl-Addition Homopolymeization of Norbornenes with Bromoalkyl Groups
title_sort vinyl-addition homopolymeization of norbornenes with bromoalkyl groups
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10674773/
https://www.ncbi.nlm.nih.gov/pubmed/38006171
http://dx.doi.org/10.3390/polym15224444
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