West Pomeranian University of Technology, Szczecin, Science, Piastów Ave. 17, 70-310 Szczecin, Poland.
Faculty of Chemical Technology and Engineering Piastów Ave. 42, 71-065 Szczecin, Poland.
Molecules. 2020 Mar 28;25(7):1541. doi: 10.3390/molecules25071541.
In this work, a bio-based copolyester with good mechanical properties was synthesized and characterized in terms of structure, main properties and biodegradability Determining the chemical structure of such materials is important to understand their behavior and properties. Performing an extraction of insoluble cross-linked polymer using different solvents allowed us to analyze how the polymer behaves when subjected to different chemical environments, and to obtain soluble samples suitable for more in-depth analysis. Chemical structure of poly (xylitol sebacate-co-butylene sebacate) was determined by a H NMR and FTIR analysis of both prepolymer gel sample and samples obtained by extraction of cross-linked polymer using different solvents. Block structure of the copolymer was confirmed by both NMR and DSC. Gel fraction, swelling value, water contact angle, and mechanical properties were also analyzed. Biodegradability of this material was confirmed by performing enzymatic and hydrolytic degradation. Synthesizing sugar-alcohol based copolyester using three monomers leads to obtaining a material with interesting chemical structure and desirable mechanical properties comparable to conventional elastomers.
在这项工作中,我们合成了一种具有良好机械性能的生物基共聚酯,并从结构、主要性能和可生物降解性方面对其进行了表征。确定这类材料的化学结构对于了解它们的行为和性能非常重要。通过使用不同溶剂对不溶性交联聚合物进行萃取,我们可以分析聚合物在不同化学环境下的行为,并获得适合更深入分析的可溶性样品。通过对预聚物凝胶样品和使用不同溶剂萃取交联聚合物得到的样品进行 H NMR 和 FTIR 分析,确定了聚(木糖醇癸二酸-co-丁二醇癸二酸)的化学结构。通过 NMR 和 DSC 也证实了共聚物的嵌段结构。还分析了凝胶含量、溶胀值、水接触角和机械性能。通过进行酶解和水解降解来确认这种材料的可生物降解性。使用三种单体合成糖醇基共聚酯,可获得具有有趣化学结构和理想机械性能的材料,可与传统弹性体相媲美。