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通过等离子体源离子注入制备塑料和生物聚合物多层膜。

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

作者信息

Shin Gye Hwa, Lee Yeon Hee, Lee Jin Sil, Kim Young Soo, Choi Won Seok, Park Hyun Jin

机构信息

Korea University, 1, 5-Ka, Anam-Dong, Sungbuk-Ku, Seoul 136-701, Korea.

出版信息

J Agric Food Chem. 2002 Jul 31;50(16):4608-14. doi: 10.1021/jf020169r.

Abstract

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 CF(4) 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 CF(4) 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.

摘要

采用等离子体源离子注入(PSII)技术来改善线性低密度聚乙烯(LLDPE)与生物聚合物之间的附着力。使用氧气(O₂)或四氟化碳(CF₄)气体通过PSII对LLDPE进行处理以改性其表面。改性后,将壳聚糖或玉米醇溶蛋白用于涂覆在LLDPE上。通过静滴法使用接触角测量仪评估LLDPE表面的润湿性。采用X射线光电子能谱(XPS)分析LLDPE表面。在处理前后,在用O₂进行PSII处理的LLDPE的情况下,在注入表面形成了含氧官能团。在用CF₄进行PSII处理的LLDPE中,观察到LLDPE表面的氟浓度显著增加,并且通过化学反应形成了疏水基团。涂覆有壳聚糖或玉米醇溶蛋白的双层膜的透氧率降低了10倍。与LLDPE相比,多层膜的拉伸强度略有下降。这种塑料和生物聚合物多层膜因其具有氧气阻隔性能以及多层膜易于回收利用的特点而具有食品包装应用潜力。

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