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Effects of temperature and clay content on water absorption characteristics of modified MMT clay/cyclic olefin copolymer nanocomposite films: Permeability, dynamic mechanical properties and the encapsulated organic device performance

机译:温度和黏土含量对改性MMT黏土/环烯烃共聚物纳米复合膜吸水特性的影响:渗透性,动态力学性能和包封的有机器件性能

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摘要

In the present study, amino-silane modified layered organosilicates were used to reinforce cyclic olefin copolymer to enhance the thermal, mechanical and moisture impermeable barrier properties. The optimum clay loading (4%) in the nanocomposite increases the thermal stability of the film while further loading decreases film stability. Water absorption behavior at 62 degrees C was carried out and compared with the behavior at room temperature and 48 degrees C. The stiffness of the matrix increases with clay content and the recorded strain to failure for the composite films was lower than the neat film. Dynamic mechanical analysis show higher storage modulus and low loss modulus for 2.5-4 wt% clay loading. Calcium degradation test and device encapsulation also show the evidence of optimum clay loading of 4 wt% for improved low water vapor transmission rates compared to other nanocomposite films. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本研究中,氨基硅烷改性的层状有机硅酸盐用于增强环烯烃共聚物,以增强热,机械和不透水的阻隔性能。纳米复合材料中最佳的粘土负载量(4%)增加了薄膜的热稳定性,而进一步的负载则降低了薄膜的稳定性。进行了在62摄氏度下的吸水行为,并将其与在室温和48摄氏度下的行为进行了比较。基体的刚度随粘土含量的增加而增加,所记录的复合薄膜的破坏应变低于纯净薄膜。动态力学分析表明,对于2.5-4 wt%的粘土填充量,储能模量较高,损耗模量较低。钙降解测试和器件封装还显示出与其他纳米复合材料薄膜相比,陶土的最佳粘土负载量为4 wt%,可以改善低水蒸气透过率。 (C)2014 Elsevier Ltd.保留所有权利。

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