Department of Food Science, Rutgers University, 65 Dudley Road, New Brunswick, New Jersey 08901-8520, USA.
J Agric Food Chem. 2013 May 29;61(21):5130-8. doi: 10.1021/jf400541q. Epub 2013 May 16.
Polyethylene is the most prevalent plastic and is commonly used as a packaging material. Despite its common use, there are not many studies on imparting functionalities to those films which can make them more desirable for frozen food packaging. Here, commercial low-density polyethylene (LDPE) films were oxidized by UV-ozone (UVO) treatment to obtain a negatively charged hydrophilic surface to allow fabrication of functional multilayers. An increase in hydrophilicity was observed when films were exposed to UVO for 4 min and longer. Thin multilayers were formed by dipping the UVO-treated films into biopolymer solutions, and extracellular ice nucleators (ECINs) were immobilized onto the film surface to form a functional top layer. Polyelectrolyte adsorption was studied and confirmed on silicon wafers by measuring the water contact angles of the layers and investigating the surface morphology via atomic force microscopy. An up to 4-5 °C increase in ice nucleation temperatures and an up to 10 min decrease in freezing times were observed with high-purity deionized water samples frozen in ECIN-coated LDPE films. Films retained their ice nucleation activity up to 50 freeze-thaw cycles. Our results demonstrate the potential of using ECIN-coated polymer films for frozen food application.
聚乙烯是最常见的塑料,通常用作包装材料。尽管它的用途广泛,但关于赋予那些可以使它们更适合冷冻食品包装的薄膜功能的研究并不多。在这里,商业低密度聚乙烯 (LDPE) 薄膜通过 UV-臭氧 (UVO) 处理进行氧化,以获得带负电荷的亲水表面,从而可以制造功能性多层膜。当薄膜暴露于 UVO 处理 4 分钟及以上时,观察到亲水性增加。通过将 UVO 处理的薄膜浸入生物聚合物溶液中来形成薄的多层膜,并将细胞外冰成核剂 (ECIN) 固定在薄膜表面上以形成功能性顶层。通过测量层的水接触角并通过原子力显微镜研究表面形态来研究并确认聚电解质在硅晶片上的吸附。在 ECIN 涂覆的 LDPE 薄膜中冷冻高纯度去离子水样品时,观察到冰核化温度最多提高 4-5°C,冷冻时间最多减少 10 分钟。薄膜保留其冰核化活性长达 50 次冻融循环。我们的结果表明,使用 ECIN 涂覆的聚合物薄膜在冷冻食品应用中具有潜力。