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A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment

A series of non-isocyanate poly(ether urethane) (PEU) were prepared by an environmentally friendly route based on dimethyl carbonate, diols and a polyether. The effect of the chemical structure of polyurethane hard segments on the properties of this kind of PEU was systematically investigated in thi...

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Autores principales: Shen, Ziyun, Zheng, Liuchun, Song, Danqing, Liu, Yi, Li, Chuncheng, Liu, Jiajian, Xiao, Yaonan, Wu, Shaohua, Zhou, Tianbo, Zhang, Bo, Lv, Xuedong, Mei, Qiyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143292/
https://www.ncbi.nlm.nih.gov/pubmed/35631921
http://dx.doi.org/10.3390/polym14102039
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author Shen, Ziyun
Zheng, Liuchun
Song, Danqing
Liu, Yi
Li, Chuncheng
Liu, Jiajian
Xiao, Yaonan
Wu, Shaohua
Zhou, Tianbo
Zhang, Bo
Lv, Xuedong
Mei, Qiyong
author_facet Shen, Ziyun
Zheng, Liuchun
Song, Danqing
Liu, Yi
Li, Chuncheng
Liu, Jiajian
Xiao, Yaonan
Wu, Shaohua
Zhou, Tianbo
Zhang, Bo
Lv, Xuedong
Mei, Qiyong
author_sort Shen, Ziyun
collection PubMed
description A series of non-isocyanate poly(ether urethane) (PEU) were prepared by an environmentally friendly route based on dimethyl carbonate, diols and a polyether. The effect of the chemical structure of polyurethane hard segments on the properties of this kind of PEU was systematically investigated in this work. Polyurethane hard segments with different structures were first prepared from hexamethylene di-carbamate (BHC) and different diols (butanediol, hexanediol, octanediol and decanediol). Subsequently, a series of non-isocyanate PEU were obtained by polycondensation of the polyurethane hard segments with the polyether soft segments (PTMG2000). The PEU were characterized by GPC, FT-IR, (1)H NMR, DSC, WAXD, SAXS, AFM and tensile testing. The results show that the urea groups generated by the side reaction affect the degree of crystallization of hard segments by influencing the hydrogen bonding of the hard segments molecular chains. The degree of hard segment crystallization, in turn, affects the thermal and mechanical properties of the polymer. The urea group content is related to the carbon chain length of the diol used for the synthesis of hard segments. When butanediol is applied to synthesize hard segment, the hard segment of the resulting PEU is unable to crystallize. Therefore, the tensile strength and modulus of elasticity of butanediol-based PEU is lowest among three, though it possesses the highest urea group content. When longer octanediol or decanediol is applied to synthesize the hard segment, the hard segments in the resulting polyether-based polyurethane are crystallizable and the resulting PEU possesses higher tensile strength.
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spelling pubmed-91432922022-05-29 A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment Shen, Ziyun Zheng, Liuchun Song, Danqing Liu, Yi Li, Chuncheng Liu, Jiajian Xiao, Yaonan Wu, Shaohua Zhou, Tianbo Zhang, Bo Lv, Xuedong Mei, Qiyong Polymers (Basel) Article A series of non-isocyanate poly(ether urethane) (PEU) were prepared by an environmentally friendly route based on dimethyl carbonate, diols and a polyether. The effect of the chemical structure of polyurethane hard segments on the properties of this kind of PEU was systematically investigated in this work. Polyurethane hard segments with different structures were first prepared from hexamethylene di-carbamate (BHC) and different diols (butanediol, hexanediol, octanediol and decanediol). Subsequently, a series of non-isocyanate PEU were obtained by polycondensation of the polyurethane hard segments with the polyether soft segments (PTMG2000). The PEU were characterized by GPC, FT-IR, (1)H NMR, DSC, WAXD, SAXS, AFM and tensile testing. The results show that the urea groups generated by the side reaction affect the degree of crystallization of hard segments by influencing the hydrogen bonding of the hard segments molecular chains. The degree of hard segment crystallization, in turn, affects the thermal and mechanical properties of the polymer. The urea group content is related to the carbon chain length of the diol used for the synthesis of hard segments. When butanediol is applied to synthesize hard segment, the hard segment of the resulting PEU is unable to crystallize. Therefore, the tensile strength and modulus of elasticity of butanediol-based PEU is lowest among three, though it possesses the highest urea group content. When longer octanediol or decanediol is applied to synthesize the hard segment, the hard segments in the resulting polyether-based polyurethane are crystallizable and the resulting PEU possesses higher tensile strength. MDPI 2022-05-16 /pmc/articles/PMC9143292/ /pubmed/35631921 http://dx.doi.org/10.3390/polym14102039 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
Shen, Ziyun
Zheng, Liuchun
Song, Danqing
Liu, Yi
Li, Chuncheng
Liu, Jiajian
Xiao, Yaonan
Wu, Shaohua
Zhou, Tianbo
Zhang, Bo
Lv, Xuedong
Mei, Qiyong
A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title_full A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title_fullStr A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title_full_unstemmed A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title_short A Non-Isocyanate Route to Poly(Ether Urethane): Synthesis and Effect of Chemical Structures of Hard Segment
title_sort non-isocyanate route to poly(ether urethane): synthesis and effect of chemical structures of hard segment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9143292/
https://www.ncbi.nlm.nih.gov/pubmed/35631921
http://dx.doi.org/10.3390/polym14102039
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