Paul Uttam C, Bayer Gözde, Grasselli Silvia, Malchiodi Annalisa, Bayer Ilker S
Smart Materials, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.
DS Bio ve Nanoteknoloji A. Ş., Lavida City Plaza 45/7, Ankara 06530, Turkey.
Polymers (Basel). 2022 Mar 16;14(6):1199. doi: 10.3390/polym14061199.
Waterborne polyurethane dispersions can be designed to generate highly functional and environmentally friendly polymer systems. The use of water as the main dispersion medium is very advantageous for the environment and the introduction of linear and aliphatic polyols such as polyether and polyesters in the formulations can make them highly biocompatible and susceptible to biodegradation. In this study, we fabricated biodegradable, flexible and transparent plastic films by hybridizing a waterborne aliphatic polyester polyurethane (PU) suspension with polyvinylpyrrolidone (PVP) using mechanical homogenization in water. Films were cast containing different concentrations of PVP. The hybrids containing 50 wt.% PVP (PU/PVP_50/50) were hydrophobic, stretchable, highly transparent and ductile beyond 100% strain compared to highly brittle PVP. The mechanical properties of the PU/PVP_50/50 film remained stable after repeated immersion wet-dry cycles, each lasting 2 days, and the dried films recovered their mechanical properties after each cycle. Based on a 28-day biochemical oxygen demand (BOD) test, the hybrid PU/PVP_50/50 film underwent extensive biodegradation. This simple but effective process can be very suitable in producing biodegradable ductile films with very good transparency that can serve a number of applications such as agricultural mulches, food and pharmaceutical packaging and biomedical field.
水性聚氨酯分散体可以设计成生成具有高功能性和环境友好性的聚合物体系。使用水作为主要分散介质对环境非常有利,并且在配方中引入线性和脂肪族多元醇(如聚醚和聚酯)可以使其具有高度的生物相容性且易于生物降解。在本研究中,我们通过在水中进行机械均质化,将水性脂肪族聚酯聚氨酯(PU)悬浮液与聚乙烯吡咯烷酮(PVP)混合,制备出了可生物降解、柔性且透明的塑料薄膜。所浇铸的薄膜含有不同浓度的PVP。与高度脆性的PVP相比,含有50 wt.% PVP的混合物(PU/PVP_50/50)具有疏水性、可拉伸性、高度透明性且在应变超过100%时具有延展性。在持续2天的反复浸泡-干燥循环后,PU/PVP_50/50薄膜的机械性能保持稳定,并且干燥后的薄膜在每个循环后都能恢复其机械性能。基于28天的生化需氧量(BOD)测试,混合的PU/PVP_50/50薄膜发生了广泛的生物降解。这种简单但有效的工艺非常适合生产具有非常好透明度的可生物降解韧性薄膜,可用于多种应用,如农用薄膜、食品和药品包装以及生物医学领域。