Cheung Ka Man, Chong Hio Lam, Jiang Zhuolun, Ngai To
Department of Chemistry, The Chinese University of Hong Kong, Shatin, Hong Kong, China.
Soft Matter. 2023 Oct 18;19(40):7696-7707. doi: 10.1039/d3sm00826f.
The pervasive presence of plastic packaging has led to significant environmental contamination due to excessive reliance on petrochemicals and the inherent non-biodegradability of these materials. Both bacterial cellulose (BC) and chitosan (CT) films offer a promising option for food packaging purposes due to their sturdy mechanical strength, biodegradability, environmentally friendly manufacturing process, and non-toxic composition. However, the considerable moisture absorption capacity of these eco-friendly materials has hindered their extensive use, as it leads to a reduction in their strength and ability to serve as a barrier. In the present study, we introduced a composite material of BC reinforced with a lauryl gallate grafted CT coating. After grafting CT with lauryl gallate (CT-LG) through enzymatic modification, it showed excellent hydrophobic properties also in a green route of chemistry synthesis. Based on the results of the study, the duration of the water droplet test of the pure CT-LG film and BC coated with CT-LG (BC/CT-LG) films was more than 15 min, showing that water droplets can be completely blocked by the CT-LG coating without water penetration. For the mechanical properties, the wet flexural strength and wet tensile strength of BC/CT-LG films have improved 400% and 70% compared with the original BC. This method produces a composite material with enhanced hydrophobicity and green properties and shows great potential for use in drinking straws or packaging bags.
由于过度依赖石化产品以及这些材料固有的不可生物降解性,塑料包装的普遍存在已导致严重的环境污染。细菌纤维素(BC)膜和壳聚糖(CT)膜因其坚固的机械强度、生物可降解性、环保的制造工艺和无毒的成分,为食品包装提供了一个有前景的选择。然而,这些环保材料相当大的吸湿能力阻碍了它们的广泛应用,因为这会导致其强度降低以及作为阻隔材料的能力下降。在本研究中,我们引入了一种用没食子酸月桂酯接枝的CT涂层增强的BC复合材料。通过酶促改性使CT与没食子酸月桂酯(CT-LG)接枝后,它在绿色化学合成路线中也表现出优异的疏水性能。基于研究结果,纯CT-LG膜和涂有CT-LG的BC膜(BC/CT-LG)的水滴测试持续时间超过15分钟,表明水滴可被CT-LG涂层完全阻挡而不会透水。对于机械性能,BC/CT-LG膜的湿弯曲强度和湿拉伸强度与原始BC相比分别提高了400%和70%。这种方法制备出了具有增强疏水性和绿色特性的复合材料,在吸管或包装袋方面显示出巨大的应用潜力。