Srisuwan Yaowalak, Srihanam Prasong, Rattanasuk Surachai, Baimark Yodthong
Biodegradable Polymers Research Unit, Department of Chemistry and Centre of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Kantarawichai 44150, Mahasarakham, Thailand.
Major of Biology, Department of Science and Technology, Faculty of Liberal Arts and Science, Roi-Et Rajabhat University, Selaphum 45120, Roi-Et, Thailand.
Polymers (Basel). 2024 Jun 11;16(12):1660. doi: 10.3390/polym16121660.
High-molecular-weight poly(L-lactide)--poly(ethylene glycol)--poly(L-lactide) (PLLA-PEG-PLLA) is a flexible and biodegradable bioplastic that has promising potential in flexible food packaging but it has no antibacterial ability. Thus, in this work, the effect of zinc oxide nanoparticles (nano-ZnOs) which have antimicrobial activity on various properties of PLLA-PEG-PLLA was determined. The addition of nano-ZnOs enhanced the crystallization, tensile, UV-barrier, and antibacterial properties of PLLA-PEG-PLLA. However, the crystallization and tensile properties of nanocomposite films decreased again as the nano-ZnO increased beyond 2 wt%. The nano-ZnO was well distributed in the PLLA-PEG-PLLA matrix when the nano-ZnO content did not exceed 2 wt% and exhibited some nano-ZnO agglomerates when the nano-ZnO content was higher than 2 wt%. The thermal stability and moisture uptake of the PLLA-PEG-PLLA matrix decreased and the film's opacity increased as the nano-ZnO content increased. The PLLA-PEG-PLLA/ZnO nanocomposite films showed good antibacterial activity against bacteria such as and . It can be concluded that nano-ZnOs can be used as a multi-functional filler of the flexible PLLA-PEG-PLLA. As a result, the addition of nano-ZnOs as a nucleating, reinforcing, UV-screening, and antibacterial agent in the flexible PLLA-PEG-PLLA matrix may provide protection for both the food and the packaging during transportation and storage.
高分子量聚(L-丙交酯)-聚(乙二醇)-聚(L-丙交酯)(PLLA-PEG-PLLA)是一种柔韧性好且可生物降解的生物塑料,在柔性食品包装领域具有广阔的应用前景,但它没有抗菌能力。因此,在本研究中,测定了具有抗菌活性的氧化锌纳米颗粒(纳米ZnO)对PLLA-PEG-PLLA各种性能的影响。纳米ZnO的添加增强了PLLA-PEG-PLLA的结晶性能、拉伸性能、紫外线阻隔性能和抗菌性能。然而,当纳米ZnO含量超过2 wt%时,纳米复合薄膜的结晶性能和拉伸性能又会下降。当纳米ZnO含量不超过2 wt%时,纳米ZnO在PLLA-PEG-PLLA基体中分布良好,而当纳米ZnO含量高于2 wt%时,则会出现一些纳米ZnO团聚体。随着纳米ZnO含量的增加,PLLA-PEG-PLLA基体的热稳定性和吸湿率下降,薄膜的不透明度增加。PLLA-PEG-PLLA/ZnO纳米复合薄膜对诸如 和 等细菌表现出良好的抗菌活性。可以得出结论,纳米ZnO可作为柔性PLLA-PEG-PLLA的多功能填料。因此,在柔性PLLA-PEG-PLLA基体中添加纳米ZnO作为成核剂、增强剂、紫外线屏蔽剂和抗菌剂,可能在运输和储存过程中为食品和包装提供保护。