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Efficient preparation of hydrogen barrier films by ultrasonic-assisted layer-by-layer assembly

机译:超声辅助逐层组装高效制备氢阻隔膜

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摘要

Graphene oxide (GO) can be self-assembled with various polymer materials layer by layer to prepare composite materials with excellent barrier properties. However, the process is cumbersome and time-consuming. In this article, GO/polyethyleneimine(PEI) hydrogen barrier films were successfully prepared by ultrasonic-assisted layer-by-layer self-assembly technology. Results show that the ultrasonic-assisted method not only reduced the immersion time from several minutes to 10 s, but also increased the density of the material packing to reduce the channels through which hydrogen molecules can diffuse while improving the horizontal orientation of the GO sheet to prolong the diffusion paths of gas molecules. Finally, the hydrogen transmission rate of 20-bilayer films assembled under ultrasonic conditions is equivalent to that of 30-bilayer films assembled without ultrasonic conditions, which greatly shortens the film-making period. Therefore, the ultrasonic-assisted method has a good prospect in the preparation of gas barrier films.
机译:氧化石墨烯(GO)可以与各种高分子材料逐层自组装,制备出具有优异阻隔性能的复合材料。但是,该过程既繁琐又耗时。本文采用超声辅助逐层自组装技术成功制备了GO/聚乙烯亚胺(PEI)氢阻隔膜。结果表明,超声辅助方法不仅将浸泡时间从几分钟缩短到10 s,而且增加了材料堆积的密度,减少了氢分子扩散的通道,同时改善了GO片的水平取向,延长了气体分子的扩散路径。最后,在超声条件下组装的20双层薄膜的氢透过率与没有超声条件组装的30双层薄膜相当,大大缩短了制膜周期。因此,超声辅助法在气体阻隔膜的制备中具有良好的应用前景。

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