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Roll-to-Roll Technology on Pilot Scale for Transparent Ultra-High Multilayer Barriers

机译:透明超高多层屏障的中试卷对卷技术

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Thin transparent layers on polymer films are used to drastically enhance the permeation barrier properties of polymer webs while at the same time maintaining the flexibility and optical transparency. Applications range from food packaging films to encapsulation films for solar cells or flexible electronics. Very low water vapor and oxygen transmission rates are required for the encapsulation of flexible OPV devices and OLEDs. This paper introduces a new technology for manufacturing ultra-high permeation barrier films using a roll-to-roll coating process. This multilayerbarrier is based on reacti vely sputtered oxide barrier layers and an interlayer of inorganic-organic hybrid polymers (ORMOCER®s). The multilayer barrier is compared to other high barrier technologies and evaluated regarding barrier performance, optical transparency, surface properties and reproducibility. The water vapor transmission rate (WVTR) has been measured using different methods for different sample sizes and test conditions. The measurement limit of a MOCON Aquatran® system (5010~(-4) g/(m~2d)) has been reached with a three layer stack at 38°C / 90% relative humidity. The technology is now being used for a pilot production of barrier films. Coated rolls with a width of 400 mm and several 100 m in length can be provided for development purposes. In addition to the barrier layers, further layers can be applied to the polymer film to provide a mechanical protection, a smoothing layer for further processing or transparent conductive layers for e.g. manufacturing of flexible organic solar cells or flexible OLEDs. Applications such as using the barrier film as either a substrate for organic electronic devices or for the encapsulation of such devices will be discussed.
机译:聚合物薄膜上的薄透明层用于显着增强聚合物纤维网的渗透阻隔性能,同时保持柔韧性和光学透明性。应用范围从食品包装膜到太阳能电池或柔性电子器件的封装膜。柔性OPV器件和OLED的封装要求非常低的水蒸气和氧气透过率。本文介绍了一种采用卷对卷涂布工艺制造超高渗透阻隔薄膜的新技术。该多层阻隔层基于反应性溅射的氧化物阻隔层和无机-有机杂化聚合物(ORMOCER®)的中间层。将多层阻隔层与其他高阻隔层技术进行比较,并对阻隔层性能,光学透明性,表面性质和可再现性进行评估。使用不同的方法针对不同的样本量和测试条件测量了水蒸气透过率(WVTR)。在38°C / 90%相对湿度下使用三层堆叠已达到MOCONAquatran®系统的测量极限(5010〜(-4)g /(m〜2d))。该技术现已用于隔离膜的中试生产。出于开发目的,可以提供宽度为400 mm,长度为100 m的涂层辊。除了阻挡层之外,可以将其他层施加到聚合物膜上以提​​供机械保护,用于进一步处理的平滑层或用于例如透明导电层的透明导电层。柔性有机太阳能电池或柔性OLED的制造。将讨论诸如将阻挡膜用作有机电子器件的基板或用于此类器件的封装的应用。

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