a Faculty of Agriculture, Department of Food Science and Technology , University of Tabriz , Tabriz , Iran.
Crit Rev Food Sci Nutr. 2015;55(12):1699-723. doi: 10.1080/10408398.2012.731023.
Most materials currently used for food packaging are nondegradable, generating environmental problems. Several biopolymers have been exploited to develop materials for ecofriendly food packaging. However, the use of biopolymers has been limited because of their usually poor mechanical and barrier properties, which may be improved by adding reinforcing compounds (fillers), forming composites. Most reinforced materials present poor matrix-filler interactions, which tend to improve with decreasing filler dimensions. The use of fillers with at least one nanoscale dimension (nanoparticles) produces nanocomposites. Nanoparticles have proportionally larger surface area than their microscale counterparts, which favors the filler-matrix interactions and the performance of the resulting material. Besides nanoreinforcements, nanoparticles can have other functions when added to a polymer, such as antimicrobial activity, etc. in this review paper, the structure and properties of main kinds of nanostructured materials which have been studied to use as nanofiller in biopolymer matrices are overviewed, as well as their effects and applications.
大多数用于食品包装的材料都是不可降解的,这会产生环境问题。已经开发了几种生物聚合物来开发用于环保食品包装的材料。然而,由于其通常较差的机械和阻隔性能,生物聚合物的使用受到限制,这些性能可以通过添加增强化合物(填料)来提高,形成复合材料。大多数增强材料的基体-填料相互作用较差,而随着填料尺寸的减小,这种相互作用往往会得到改善。使用至少具有一个纳米尺寸(纳米粒子)的填料会产生纳米复合材料。纳米粒子的比表面积比其微尺度对应物大得多,这有利于填料-基体相互作用和所得材料的性能。除了纳米增强剂之外,纳米粒子在添加到聚合物中时还可以具有其他功能,例如抗菌活性等。在本文综述中,综述了用作生物聚合物基体中纳米填料的主要种类的纳米结构材料的结构和性能,以及它们的作用和应用。