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Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes

Carbonate-type macrodiols synthesized by base-catalyzed polycondensation of co-diols and dimethyl carbonate as an environmentally-friendly route were subsequently utilized for the preparation of transparent and self-healable thermoplastic polyurethanes (TPUs) containing a carbonate-type soft segment...

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Autores principales: Kim, Seon-Mi, Park, Seul-A, Hwang, Sung Yeon, Kim, Eun Seon, Jegal, Jonggeon, Im, Changgyu, Jeon, Hyeonyeol, Oh, Dongyeop X., Park, Jeyoung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6418697/
https://www.ncbi.nlm.nih.gov/pubmed/30965963
http://dx.doi.org/10.3390/polym9120663
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author Kim, Seon-Mi
Park, Seul-A
Hwang, Sung Yeon
Kim, Eun Seon
Jegal, Jonggeon
Im, Changgyu
Jeon, Hyeonyeol
Oh, Dongyeop X.
Park, Jeyoung
author_facet Kim, Seon-Mi
Park, Seul-A
Hwang, Sung Yeon
Kim, Eun Seon
Jegal, Jonggeon
Im, Changgyu
Jeon, Hyeonyeol
Oh, Dongyeop X.
Park, Jeyoung
author_sort Kim, Seon-Mi
collection PubMed
description Carbonate-type macrodiols synthesized by base-catalyzed polycondensation of co-diols and dimethyl carbonate as an environmentally-friendly route were subsequently utilized for the preparation of transparent and self-healable thermoplastic polyurethanes (TPUs) containing a carbonate-type soft segment. Three types of macrodiols, obtained from mono, dual and triple diol-monomers for target molecular weights of 1 and 1.5 kg mol(−1), were analyzed by (1)H NMR integration and the OH titration value. Colorless transparent macrodiols in a liquid state at a room temperature of 20 °C were obtained, except the macrodiol from mono 1,6-hexanediol. Before TPU synthesis, macrodiols require pH neutralization to prevent gelation. TPUs synthesized by a solution pre-polymer method with 4,4′-methylene(bisphenyl isocyanate) and 1,4-butanediol as a chain extender exhibited moderate molecular weights, good transparencies and robust mechanical properties. Especially, the incorporation of 3-methyl-1,5-pentanediol within carbonate-type macrodiols enhanced the transparency of the resultant TPUs by decreasing the degree of microphase separation evidenced by ATR-FTIR and DSC. Interestingly, packing density of hard segments and the degree of microphase separation determined the self-healing efficiency of TPUs, which showed good performances in the case of sourced macrodiols from triple diol-monomers.
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spelling pubmed-64186972019-04-02 Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes Kim, Seon-Mi Park, Seul-A Hwang, Sung Yeon Kim, Eun Seon Jegal, Jonggeon Im, Changgyu Jeon, Hyeonyeol Oh, Dongyeop X. Park, Jeyoung Polymers (Basel) Article Carbonate-type macrodiols synthesized by base-catalyzed polycondensation of co-diols and dimethyl carbonate as an environmentally-friendly route were subsequently utilized for the preparation of transparent and self-healable thermoplastic polyurethanes (TPUs) containing a carbonate-type soft segment. Three types of macrodiols, obtained from mono, dual and triple diol-monomers for target molecular weights of 1 and 1.5 kg mol(−1), were analyzed by (1)H NMR integration and the OH titration value. Colorless transparent macrodiols in a liquid state at a room temperature of 20 °C were obtained, except the macrodiol from mono 1,6-hexanediol. Before TPU synthesis, macrodiols require pH neutralization to prevent gelation. TPUs synthesized by a solution pre-polymer method with 4,4′-methylene(bisphenyl isocyanate) and 1,4-butanediol as a chain extender exhibited moderate molecular weights, good transparencies and robust mechanical properties. Especially, the incorporation of 3-methyl-1,5-pentanediol within carbonate-type macrodiols enhanced the transparency of the resultant TPUs by decreasing the degree of microphase separation evidenced by ATR-FTIR and DSC. Interestingly, packing density of hard segments and the degree of microphase separation determined the self-healing efficiency of TPUs, which showed good performances in the case of sourced macrodiols from triple diol-monomers. MDPI 2017-11-30 /pmc/articles/PMC6418697/ /pubmed/30965963 http://dx.doi.org/10.3390/polym9120663 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Seon-Mi
Park, Seul-A
Hwang, Sung Yeon
Kim, Eun Seon
Jegal, Jonggeon
Im, Changgyu
Jeon, Hyeonyeol
Oh, Dongyeop X.
Park, Jeyoung
Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title_full Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title_fullStr Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title_full_unstemmed Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title_short Environmentally-Friendly Synthesis of Carbonate-Type Macrodiols and Preparation of Transparent Self-Healable Thermoplastic Polyurethanes
title_sort environmentally-friendly synthesis of carbonate-type macrodiols and preparation of transparent self-healable thermoplastic polyurethanes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6418697/
https://www.ncbi.nlm.nih.gov/pubmed/30965963
http://dx.doi.org/10.3390/polym9120663
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