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OXYGEN PERMEABILITY OF NOVEL ORGANIC-INORGANIC HYBRID MATERIALS COATED ON POLYETHYLENE

机译:聚乙烯上涂覆新型有机无机杂化材料的氧气渗透性

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The oxygen barrier properties of composite materials, consisting of a 45 μm thick LDPE substrate coated by a thin layer (0.7-1 μm) of nanostructured hybrid organic/inorganic materials based on SiO2 and polyethylene-polyethylene glycol (PE-PEG) block copolymers, obtained via a sol-gel technique have been characterized at 35°C and 50°C. A significant decrease (25-40%) of the oxygen transfer rate has been observed for coated samples with respect to bare substrate both at 35°C and 50°C. The barrier effect was further improved by adding of a second organic component capable of forming hydrogen bonds, namely poly(4-hydroxy styrene) (PHS): use of PHS leads to a remarkable decrease (50 - 70 %) of the oxygen transfer rate both at 35°C and 50°C. It has been determined that the optimal formulation is the one containing 22% of PHS and 33% of silica; the thickness required for the multilayer sample to have the same barrier properties as a 45 μm thick, homogenous film composed of HDPE, oPP and PLA is equal to 2.5, 0.2 and 0.1 μm respectively.
机译:复合材料的氧气阻隔性能,由基于SiO 2和聚乙烯 - 聚乙二醇(PE-PEG)嵌段共聚物的薄层(0.7-1μm)的薄层(0.7-1μm)涂覆的薄层(0.7-1μm)涂覆的45μm厚的LDPE基材组成,所述复合材料由薄层(0.7-1μm)纳米结构杂交有机/无机材料组成,通过溶胶 - 凝胶技术获得的特征在35℃和50℃。已经观察到在35℃和50℃下相对于裸衬底的涂覆的样品观察到显着的降低(25-40%)的氧传输速率。通过加入能够形成氢键的第二有机组分进一步改善阻隔效应,即聚(4-羟基苯乙烯)(pH):使用pHS导致氧传输速率显着降低(50-70%)均在35°C和50°C。已经确定最佳制剂是含有22%的pH和33%的二氧化硅的制剂;多层样品所需的厚度与由HDPE,OPP和PLA组成的45μm厚,均匀膜具有与45μm厚的偏离膜具有相同的阻挡性,分别等于2.5,0.2和0.1μm。

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