Frone Adriana Nicoleta, Panaitescu Denis Mihaela, Gabor Augusta Raluca, Nicolae Cristian-Andi, Ghiurea Marius, Bradu Corina
National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, 202 Splaiul Independentei, 060021 Bucharest, Romania.
Faculty of Biology, University of Bucharest, 91-95 Splaiul Independentei, 050095 Bucharest, Romania.
Polymers (Basel). 2024 Dec 23;16(24):3606. doi: 10.3390/polym16243606.
Blending poly(3-hydroxybutyrate) (PHB) with other polymers could be a rapid and accessible solution to overcome some of its drawbacks. In this work, PHB was modified with microfibrillated cellulose (MC) and a thermoplastic polyurethane containing biodegradable segments (PU) by two routes, using a masterbatch and by direct mixing. The PU and MC modifiers improved the thermal stability of PHB by up to 13 °C and slightly decreased its melt viscosity and crystallinity, thus improving the melt processability. The addition of PU in PHB composites led to a decrease in the storage modulus, which did not exceed 20% at room temperature. The hydrolytic degradation in an alkaline environment at 50 °C for 28 days decreased the thermal stability of the composites by 58-65 °C, while the lower mass loss and morphological features showed that the PU modifier delayed the degradation of the PHB composites. The improved thermal stability, melt processability, and lower cost, along with higher flexibility and the possibility of controlling the hydrolytic degradation by the PU content, make the PHB/PU/MC composites obtained by the masterbatch method promising materials for medical and engineering applications.
将聚(3-羟基丁酸酯)(PHB)与其他聚合物共混可能是克服其某些缺点的快速且可行的解决方案。在这项工作中,通过母料法和直接混合两种途径,用微纤化纤维素(MC)和含可生物降解链段的热塑性聚氨酯(PU)对PHB进行了改性。PU和MC改性剂使PHB的热稳定性提高了多达13℃,并略微降低了其熔体粘度和结晶度,从而改善了熔体加工性能。在PHB复合材料中添加PU导致储能模量降低,在室温下不超过20%。在50℃碱性环境中水解降解28天,使复合材料的热稳定性降低了58 - 65℃,而较低的质量损失和形态特征表明PU改性剂延迟了PHB复合材料的降解。母料法制备的PHB/PU/MC复合材料具有提高的热稳定性、熔体加工性能和较低的成本,以及更高的柔韧性和通过PU含量控制水解降解的可能性,使其成为医学和工程应用中有前景的材料。