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Preparation of plastic and biopolymer multilayer films by plasma source ion implantation

机译:等离子体源离子注入制备塑料和生物聚合物多层膜

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The plasma source ion implantation (PSII) technique was used to improve the adhesion between linear low-density polyethylene (LLDPE) and biopolymer. LLDPE was treated with the PSII using O-2 or CF4 gas to modify its surface. After modification, chitosan or corn zein was used for coating on LLDPE. Wettability of the LLDPE surface was evaluated with a contact angle meter by the sessile drop method. X-ray photoelectron spectroscopy (XPS) was used to analyze the LLDPE surface. Before and after treatment, in the case of LLDPE treated with O-2 PSII, oxygen-containing functional groups were formed on the implanted surface. In the CF4 PSII treated LLDPE, it was observed that the fluorine concentration on the surface of LLDPE remarkably increased and hydrophobic groups were formed by chemical reaction. Bilayer films coated with chitosan or corn zein showed 10 times lower oxygen permeability. Tensile strength of multilayer films was decreased a little compared with that of LLDPE. The plastic and biopolymer multilayer films have potential for food packaging application because of their O-2 gas barrier property and easy recyclability of the multilayer film.
机译:等离子体源离子注入(PSII)技术用于提高线性低密度聚乙烯(LLDPE)与生物聚合物之间的粘合力。使用O-2或CF4气体通过PSII处理LLDPE,以修饰其表面。改性后,使用壳聚糖或玉米醇溶蛋白在LLDPE上进行涂层。用固定滴法用接触角计评价LLDPE表面的润湿性。 X射线光电子能谱(XPS)用于分析LLDPE表面。处理之前和之后,在用O-2 PSII处理LLDPE的情况下,在注入的表面上形成了含氧官能团。观察到在CF4PSII处理的LLDPE中,LLDPE表面上的氟浓度显着增加并且通过化学反应形成疏水基团。涂有壳聚糖或玉米醇溶蛋白的双层薄膜的透氧率降低了10倍。与LLDPE相比,多层膜的拉伸强度有所降低。塑料和生物聚合物多层膜具有O-2气体阻隔性,并且多层膜易于回收,因此具有用于食品包装的潜力。

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