School of Food Science and Technology, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.
School of Food Science and Technology, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China; State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Road, Wuxi 214122, China.
Carbohydr Polym. 2023 Apr 1;305:120498. doi: 10.1016/j.carbpol.2022.120498. Epub 2022 Dec 25.
With increasing environmental awareness and food safety concern worldwide, biodegradable active food packaging gained wide attention in recent years. Starch has been regarded as one of the most potential biomaterials to produce biodegradable films. However, relatively poor functional performance of starch-based films severely limits their application as food packaging materials. Carbon-based fillers can be used to enhance the functional attributes of starch-based films, but they are often difficult to incorporate because of their poor matrix dispersibility. In this study, we developed a simple green method to improve the dispersity of graphene in starch-based films by modifying the graphene surfaces using mussel-inspired polydopamine and copper ions. Spectroscopy and morphology analyses showed the surface of graphene was successfully modified. The addition of the nanocomposites positively influenced the microstructure of the starch-based films, as well as impacting their mechanical, barrier, and thermal properties. Additionally, the composite films exhibited antibacterial activity against food borne pathogens, suggesting promising potential of the films acting as active food packaging. Overall, the method developed in this study has the potential for optimizing and endowing extra properties of starch-based films so as to increase their application in biodegradable food packaging.
随着全球环保意识和食品安全意识的增强,可生物降解的活性食品包装在近年来受到了广泛关注。淀粉已被视为生产可生物降解薄膜最有潜力的生物材料之一。然而,基于淀粉的薄膜相对较差的功能性能严重限制了它们作为食品包装材料的应用。碳基填料可用于增强基于淀粉的薄膜的功能属性,但由于其与基质的分散性差,往往难以掺入。在本研究中,我们开发了一种简单的绿色方法,通过使用贻贝启发的聚多巴胺和铜离子修饰石墨烯表面来提高石墨烯在淀粉基薄膜中的分散性。光谱和形貌分析表明,石墨烯的表面成功地进行了修饰。纳米复合材料的添加对淀粉基薄膜的微观结构产生了积极的影响,同时也影响了它们的机械、阻隔和热性能。此外,复合薄膜对食源性病原体表现出抗菌活性,表明这些薄膜作为活性食品包装具有潜在的应用前景。总的来说,本研究中开发的方法有可能优化和赋予淀粉基薄膜额外的性能,从而增加它们在可生物降解食品包装中的应用。