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在Surlyn上逐层组装具有超高水汽阻隔性的Nafion。

Layer-by-layer assembly of Nafion on Surlyn with ultrahigh water vapor barrier.

作者信息

Seethamraju Sindhu, Rao Arun D, Ramamurthy Praveen C, Madras Giridhar

机构信息

Centre for Nanoscience and Engineering and ‡Department of Materials Engineering, Indian Institute of Science , Bangalore, 560012, India.

出版信息

Langmuir. 2014 Dec 9;30(48):14606-11. doi: 10.1021/la503302f. Epub 2014 Nov 28.

Abstract

A layer-by-layer approach was used for the fabrication of multilayer films for ultra high gas barrier applications. The ultra high gas barrier material was designed by incorporating Nafion layer in between bilayers of poly(ethylene imine) and poly(acrylic acid) on a Surlyn substrate. When the barrier film with self-assembled Nafion is exposed to the moist environment, Nafion absorbs and desorbs water molecules simultaneously, thereby reducing the ingress of moisture in to the film. In order to study the effect of Nafion, the fabricated barrier materials with and without the presence of Nafion were tested for water vapor barrier properties. The barrier films were further used for encapsulating organic photovoltaic devices and were evaluated for their potential use in barrier applications. The devices encapsulated with the films containing Nafion exhibited better performance when subjected to accelerated aging conditions. Therefore, this study demonstrates the effectiveness of self-assembled Nafion in reducing the water vapor permeability by nearly five orders of magnitude and in increasing the lifetimes of organic devices by ∼22 times under accelerated weathering conditions.

摘要

采用逐层法制备用于超高气体阻隔应用的多层膜。通过在苏林底物上的聚(乙烯亚胺)和聚丙烯酸双层之间掺入纳夫ion层来设计超高气体阻隔材料。当具有自组装纳夫ion的阻隔膜暴露在潮湿环境中时,纳夫ion同时吸收和解吸水分子,从而减少水分进入膜内。为了研究纳夫ion的作用,对有和没有纳夫ion存在的制备的阻隔材料进行了水蒸气阻隔性能测试。这些阻隔膜进一步用于封装有机光伏器件,并评估了它们在阻隔应用中的潜在用途。在加速老化条件下,用含有纳夫ion的膜封装的器件表现出更好的性能。因此,本研究证明了自组装纳夫ion在加速风化条件下将水蒸气渗透率降低近五个数量级以及将有机器件寿命提高约22倍方面的有效性。

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