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Enhanced gas barrier properties of graphene-TiO_2 nanocomposites on plastic substrates assisted by UV photoreduction of graphene oxide

机译:紫外光还原氧化石墨烯可增强塑料衬底上石墨烯-TiO_2纳米复合材料的阻气性

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Reduced graphene oxide (rGO) sheets have received great attention as a key element for thin barrier films that block the permeation of water vapor and other gases. However, it remains a challenge to prepare the rGO-based barrier films on plastic substrates through a chemically benign and low temperature fabrication route. Toxic chemicals or high temperature thermal treatments that are widely used for preparing rGO need to be avoided because they can damage the underlying plastic substrates. In this study, we report the fabrication of rGO/TiO_2 composite films via an eco-friendly and low temperature ultraviolet (UV) photoreduction process and demonstrate their enhanced gas barrier properties by measuring water vapor transmission rates (WVTRs). When photocatalytic TiO_2 nanoparticles are employed, UV exposure reduces the GO/TiO_2 composite solution to form rGO/TiO_2, which is subsequently deposited on plastic substrates. The rGO/TiO_2 composites become resistant to water absorption because the UV photoreduction of GO/TiO_2 effectively removes most polar groups on the GO sheets. We confirmed that rGO/TiO_2 composites were successfully deposited onto the plastic substrate through a solution process and the barrier films led to a substantial reduction in WVTRs of the substrate. Our strategy for preparing graphene-based thin barrier films by using a UV photoreduction process enables the fabrication of solution-processed graphene-based encapsulation layers on plastic substrates with an eco-friendly and low temperature fabrication method.
机译:还原型氧化石墨烯(rGO)板作为阻挡水蒸气和其他气体渗透的薄阻隔膜的关键元素而受到广泛关注。然而,通过化学良性和低温制造路线在塑料基底上制备基于rGO的阻挡膜仍然是一个挑战。需要避免广泛用于制备rGO的有毒化学药品或高温热处理,因为它们会损坏下面的塑料基材。在这项研究中,我们报告了通过生态友好的低温紫外线(UV)光还原工艺制造的rGO / TiO_2复合膜,并通过测量水蒸气透过率(WVTRs)展示了其增强的阻气性。当使用光催化的TiO_2纳米颗粒时,紫外线照射会还原GO / TiO_2复合溶液,形成rGO / TiO_2,然后将其沉积在塑料基材上。 rGO / TiO_2复合材料变得耐吸水,因为GO / TiO_2的紫外光还原作用有效地去除了GO片材上的大多数极性基团。我们确认,rGO / TiO_2复合材料通过溶液工艺成功沉积到塑料基材上,并且阻隔膜导致基材的WVTR大大降低。我们通过使用UV光还原工艺制备基于石墨烯的薄阻隔膜的策略,使得能够通过环保且低温的制造方法在塑料基板上制造溶液加工的基于石墨烯的封装层。

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