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Differently-charged graphene-based multilayer films by a layer-by-layer approach for oxygen gas barrier application

机译:通过逐层方法对带氧石墨烯基多层膜进行氧气阻隔应用

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摘要

Polyelectrolyte-decorated graphene with positive and negative charges was prepared using graphene oxide as a precursor along with polyallylamine hydrochloride and poly (styrenesulfonate sodium) as surface modifiers, respectively. Driven by an electrostatic interaction, the as-obtained polyelectrolyte-decorated graphene sheets were self-assembled via a layer-by-layer method, producing graphene based composite multilayers. Field emission scanning electron microscopy (FE-SEM) images showed that the surface of composite film exhibited a mass of characteristic wrinkles of graphene. Interestingly, the cross-sectional FE-SEM of the film exhibited an unstratified structure, indicating a good dispersion of graphene sheets in the composite film. The results of oxygen gas permeability testing demonstrated that the resulting composite films exhibited excellent oxygen gas barrier properties. The oxygen gas transmission rate (OTR) of the composite film with 24 bilayers was as low as 1.2 cm(3) m(-2) d(-1.)atm(-1), exhibiting potential for use in packaging applications.
机译:使用氧化石墨烯作为前体,分别使用聚烯丙胺盐酸盐和聚(苯乙烯磺酸钠)作为表面改性剂,制备带正电荷和负电荷的聚电解质修饰的石墨烯。在静电相互作用的驱动下,将所获得的聚电解质装饰的石墨烯片材通过逐层方法自组装,从而制造出石墨烯基复合多层体。场发射扫描电子显微镜(FE-SEM)图像显示复合膜的表面表现出大量的石墨烯特征皱纹。有趣的是,该膜的横截面FE-SEM表现出未分层的结构,表明石墨烯片材在复合膜中的良好分散。氧气渗透性测试的结果表明,所得复合膜表现出优异的氧气阻隔性能。具有24个双层的复合膜的氧气透过率(OTR)低至1.2 cm(3)m(-2)d(-1。)atm(-1),显示出可用于包装应用的潜力。

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