College of Materials and Textiles, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Carbohydr Polym. 2013 Feb 15;92(2):1579-85. doi: 10.1016/j.carbpol.2012.11.004. Epub 2012 Nov 10.
A layer-by-layer (LBL) approach was used to assemble alternating layers of sodium alginate (ALG)/polyethyleneimine (PEI) on biaxially oriented poly(lactic acid) (BOPLA) films in order to produce bio-based all-polymer thin films with low gas permeability. Increasing the depositing of ALG and PEI from 0 to 30 layers results in large thickness variations (from 0 to 3.92 μm). After 30 ALG/PEI layers are deposited, the resulting assembly has an OTR of 1.22 cm(3)/(m(2) day atm). When multiplied by thickness, the resulting oxygen permeability (OP) is found to be less than 3.8×10(-17) cm(3) cm/cm(2) s Pa, which is almost 3 orders of magnitude lower than that of uncoated BOPLA film (1.8×10(-14) cm(3)cm/cm(2) s Pa). At the same time, the resulting multilayer-coated BOPLA films maintain high optical clarity and tensile properties. This unique barrier thin film has become a promising alternative to non-biodegradable synthetic food packaging materials.
采用层层自组装(LBL)的方法,将交替的海藻酸钠(ALG)/聚乙烯亚胺(PEI)层组装在双轴取向聚乳酸(BOPLA)薄膜上,以制备低气体透过率的生物基全聚合物薄膜。增加 ALG 和 PEI 的沉积从 0 层到 30 层导致厚度变化很大(从 0 层到 3.92μm)。在沉积 30 层 ALG/PEI 后,得到的组装体的 OTR 为 1.22cm(3)/(m(2) day atm)。当乘以厚度时,得到的氧气透过率(OP)发现小于 3.8×10(-17)cm(3)cm/cm(2)sPa,比未涂层的 BOPLA 薄膜(1.8×10(-14)cm(3)cm/cm(2)sPa)低 3 个数量级。同时,所得多层涂层的 BOPLA 薄膜保持高光学清晰度和拉伸性能。这种独特的阻隔性薄膜已成为一种很有前途的可生物降解的合成食品包装材料的替代品。