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Atomic force microscopy (AFM) morphological surface characterization of transparent gas barrier coatings on plastic films

机译:原子力显微镜(AFM)塑料薄膜透明气体阻挡涂层形态学表面表征

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摘要

The relationship between the surface morphology and water vapor diffusivity of barrier coatings on polymeric polyethylene terephthalate (PET) films is studied by atomic force microscopy. The coatings, composed of aluminum oxide and/or silicon oxide, were grown by various deposition methods. It is observed that no correlation exists when the surface roughness is measured over large scanned areas owing to the inhomogeneous coating morphology. However, for scna sizes restricted to representative zones 0.5 mum wide, free from bumps and pinholes, it is found that those films smmother than the PET substrate show a low permeability. This result would support the idea that some other mechanism, different from the existence of surface irregularities (i.e. bumps, pinholes, etc.) and related to the form of growth, should also determien the barrier diffusivity.
机译:通过原子力显微镜研究了聚合物聚对苯二甲酸乙二醇酯(PET)膜对屏障涂层的表面形态和水蒸气扩散性的关系。 由氧化铝和/或氧化硅组成的涂层通过各种沉积方法生长。 观察到,当由于不均匀涂层形态而在大扫描区域上测量表面粗糙度时,不存在相关性。 然而,对于狭小的SCNA尺寸限制为0.5毫米宽的代表区,没有凸起和针孔,发现这些薄膜比PET基材更低,显示出低渗透性。 这一结果将支持一些其他机制,与表面不规则性(即凸起,针孔等)不同的想法以及与生长形式相关,也应该确定屏障扩散率。

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