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Ductile Copolyesters Prepared Using Succinic Acid, 1,4-Butanediol, and Bis(2-hydroxyethyl) Terephthalate with Minimizing Generation of Tetrahydrofuranoa mark
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Publication Year
2024-02-01
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Polymers, Vol.16
Keyword
biodegradablebis(2-hydroxyethyl) terephthalatecopolyesterPBSpoly(1,4-butylene succinate)polycondensation
Mesh Keyword
BiodegradableBis(2-hydroxyethyl)terephthalateButanediolCopolyestersPBSPoly(1,4-butylene succinate)PolycondensationsSuccinic acidsTetra-hydrofuranTetrahydrofurans
All Science Classification Codes (ASJC)
Chemistry (all)Polymers and Plastics
Abstract
Poly(1,4-butylene succinate) (PBS) is a promising sustainable and biodegradable synthetic polyester. In this study, we synthesized PBS-based copolyesters by incorporating 5–20 mol% of –O2CC6H4CO2– and –OCH2CH2O– units through the polycondensation of succinic acid (SA) with 1,4-butanediol (BD) and bis(2-hydroxyethyl) terephthalate (BHET). Two different catalysts, H3PO4 and the conventional catalyst (nBuO)4Ti, were used comparatively in the synthesis process. The copolyesters produced using the former were treated with M(2-ethylhexanoate)2 (M = Mg, Zn, Mn) to connect the chains through ionic interactions between M2+ ions and either –CH2OP(O)(OH)O− or (–CH2O)2P(O)O− groups. By incorporating BHET units (i.e., –O2CC6H4CO2– and –OCH2CH2O–), the resulting copolyesters exhibited improved ductile properties with enhanced elongation at break, albeit with reduced tensile strength. The copolyesters prepared with H3PO4/M(2-ethylhexanoate)2 displayed a less random distribution of –O2CC6H4CO2– and –OCH2CH2O– units, leading to a faster crystallization rate, higher Tm value, and higher yield strength compared to those prepared with (nBuO)4Ti using the same amount of BHET. Furthermore, they displayed substantial shear-thinning behavior in their rheological properties due to the presence of long-chain branches of (–CH2O)3P=O units. Unfortunately, the copolyesters prepared with H3PO4/M(2-ethylhexanoate)2, and hence containing M2+, –CH2OP(O)(OH)O−, (–CH2O)2P(O)O− groups, did not exhibit enhanced biodegradability under ambient soil conditions.
ISSN
2073-4360
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/33981
DOI
https://doi.org/10.3390/polym16040519
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Type
Article
Funding
This research was supported by the National Research Foundation of Korea (Grant Number 2020M3A9I5037889) by the Korea Institute of Marine Science and Technology Promotion (KIMST) funded by the Ministry of Oceans and Fisheries (20220258).
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Lee, Pyung Cheon Image
Lee, Pyung Cheon이평천
College of Bio-convergence Engineering
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