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Performance of an ionomer blend-nanocomposite as an effective gas barrier material for organic devices

机译:离聚物混合纳米复合物的性能作为有机装置的有效阻气材料

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摘要

A new, flexible, gas barrier material has been synthesized by exfoliating organically modified nano-clays (MMT) in the blends of Surlyn (PEMA) using a copolymer of vinyl alcohol (EVOH) and demonstrated as a gas barrier material. The materials were characterized by Fourier transform infra red (FTIR) and UV-visible spectroscopy, differential scanning calorimetry (DSC), thermo-gravimetric analysis (TGA) and tensile studies. The oxygen and water-vapor permeabilities of the fabricated films were determined by calcium degradation test and a novel permeability setup based on cavity ring down spectroscopy, respectively. Hierarchical simulations of these materials helped us to understand the effect of intermolecular interactions on diffusivities of oxygen and water molecules in these materials. Schottky structured poly(3-hexylthiophene) based organic devices were encapsulated with the fabricated films and aging studies were carried under accelerated conditions. Based on permeability test results and accelerated aging studies, the fabricated PEMA/EVOH/MMT composites were found to be effective in decreasing the permeabilities for gases by about two orders of magnitude and maintaining the lifetime of organic devices.
机译:通过使用乙烯醇(EVOH)的共聚物在Surlyn(PEMA)的共混物中通过剥离有机改性的纳米粘土(MMT)来合成一种新的,柔性的阻挡材料,并作为阻气材料。该材料的特征在于傅立叶变换红外线(FTIR)和UV可见光谱,差示扫描量热法(DSC),热重量分析(TGA)和拉伸研究。通过钙降解试验和基于腔环下光谱的新型渗透性设定测定制造薄膜的氧气和水蒸气渗透性。这些材料的分层模拟有助于我们了解分子间相互作用对这些材料中氧气和水分子的扩散性的影响。肖特基结构聚(3-己基噻吩)的有机装置用制造的薄膜包封,并且在加速条件下进行了老化研究。基于渗透性测试结果和加速老化研究,发现制造的PEMA / EVOH / MMT复合材料有效地降低了气体的渗透率约两个数量级并保持有机器件的寿命。

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