Salmas Constantinos, Giannakas Aris, Katapodis Petros, Leontiou Areti, Moschovas Dimitrios, Karydis-Messinis Andreas
Department of Materials Science & Engineering, School of Engineering, University of Ioannina, GR-45110 Ioannina, Greece.
Department of Food Science and Technology, University of Patras, GR-30100 G. Agrinio, Greece.
Nanomaterials (Basel). 2020 May 31;10(6):1079. doi: 10.3390/nano10061079.
Nowadays, the shelf-life extension of foods is a topic of major interest because of its environmental and economic benefits. For this purpose, various methods like deep-freezing, ultra-high-temperature pasteurization, drying methods, use of chemicals, controlled-atmosphere preservation, ionizing irradiation, and were investigated. During the last years, the smart packaging for foods using natural biodegradable components is of great interest because it provides positive environmental fingerprint and high shelf-life extension. In the present work, a new nanostructured composite material, the ZnO/Na-Montmorillonite hybrid, was developed. The high antimicrobial properties of the 3-D ZnO material in combination with the high barrier and strength properties of the 2-D Na-Montmorillonite material provided a high promising component for food smart packaging applications. As an extra innovation of this process, the ZnO nanorods coated the external surface of the Na-Montmorillonite and it was not intercalated into the clay as a pillaring material. This new material was incorporated with a 3% composition with a biodegradable poly(vinyl)alcohol (PVOH) polymeric matrix which also exhibits antimicrobial activity. The final product was tested via XRD, FTIR, SEM, tensile test, water sorption, water vapor permeability, oxygen permeability UV-vis, and anti-microbial activity tests and it exhibited advanced mechanical and antimicrobial properties, especially for a ZnO/Na-Montmorillonite fraction of 4:1.
如今,食品保质期的延长因其环境和经济效益而成为一个备受关注的话题。为此,人们研究了各种方法,如深度冷冻、超高温巴氏杀菌、干燥方法、化学物质的使用、气调保鲜、电离辐射等。在过去几年中,使用天然可生物降解成分的食品智能包装备受关注,因为它具有良好的环境印记和较长的保质期延长效果。在本研究中,开发了一种新型纳米结构复合材料——ZnO/钠蒙脱石杂化物。三维ZnO材料的高抗菌性能与二维钠蒙脱石材料的高阻隔和强度性能相结合,为食品智能包装应用提供了一种很有前景的成分。作为该工艺的一项额外创新,ZnO纳米棒包覆在钠蒙脱石的外表面,而不是作为柱撑材料插层到粘土中。这种新材料与具有抗菌活性的3%的可生物降解聚乙烯醇(PVOH)聚合物基体复合。通过XRD、FTIR、SEM、拉伸试验、吸水性、水蒸气透过率、氧气透过率、紫外可见光谱和抗菌活性测试对最终产品进行了测试,结果表明其具有优异的机械性能和抗菌性能,尤其是当ZnO/钠蒙脱石比例为4:1时。