Genovese Laura, Lotti Nadia, Siracusa Valentina, Munari Andrea
Civil, Chemical, Environmental and Materials Engineering Department via Terracini 28, 40131 Bologna, Italy.
Department of Chemical Science, University of Catania, Viale A. Doria 6, 95125 Catania (CT), Italy.
Materials (Basel). 2017 Sep 4;10(9):1028. doi: 10.3390/ma10091028.
In the last decade, there has been an increased interest from the food packaging industry toward the development and application of bioplastics, to contribute to the sustainable economy and to reduce the huge environmental problem afflicting the planet. In the present work, we focus on a new furan-based polyester, poly(neopentyl glycol 2,5-furanoate) (PNF) to be used for sustainable food packaging applications. The aromatic polyester was successfully synthesized with high molecular weight, through a solvent-free process, starting directly from 2,5-furandicarboxylic acid. PNF was revealed to be a material with good thermal stability, characterized by a higher T and T and a lower RAF fraction compared to poly(propylene 2,5-furanoate) (PPF), ascribable to the two methyl side groups present in PNF glycol-sub-unit. PNF's mechanical characteristics, i.e., very high elastic modulus and brittle fracture, were found to be similar to those of PPF and PEF. Barrier properties to different gases, temperatures and relative humidity were evaluated. From the results obtained, PNF was showed to be a material with very smart barrier performances, significantly superior with respect to PEF's ones. Lastly, PNF's permeability behavior did not appreciably change after contact with food simulants, whereas it got worse with increasing RH, due to the polar nature of furan ring.
在过去十年中,食品包装行业对生物塑料的开发和应用兴趣日增,以推动可持续经济发展并减少困扰地球的巨大环境问题。在本研究中,我们聚焦于一种新型呋喃基聚酯——聚(新戊二醇2,5 - 呋喃二甲酸酯)(PNF),用于可持续食品包装应用。这种芳香族聚酯通过无溶剂工艺,直接从2,5 - 呋喃二甲酸出发成功合成出高分子量产物。与聚(2,5 - 呋喃二甲酸丙二醇酯)(PPF)相比,PNF被证明是一种具有良好热稳定性的材料,其特征在于更高的玻璃化转变温度和熔点以及更低的快速结晶分数,这归因于PNF二醇亚单元中存在的两个甲基侧基。发现PNF的机械特性,即非常高的弹性模量和脆性断裂,与PPF和聚(2,5 - 呋喃二甲酸乙二酯)(PEF)相似。评估了其对不同气体、温度和相对湿度的阻隔性能。从所得结果来看,PNF表现出非常出色的阻隔性能,明显优于PEF。最后,PNF与食品模拟物接触后的渗透行为没有明显变化,然而由于呋喃环的极性性质,随着相对湿度增加其阻隔性能变差。