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Gas-Barrier Hybrid Coatings by the Assembly of Novel Poly(vinyl alcohol) and Reduced Graphene Oxide Layers through Cross-Linking with Zirconium Adducts

机译:新型聚乙烯醇和氧化锆还原层通过与锆加合物的交联组装而成的阻气杂化涂层

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摘要

Gas-barrier materials obtained by coating poly(ethylene terephthalate) (PET) substrates have already been studied in the recent literature. However, because of the benefits of using cheaper, biodegradable, and nonpolar polymers, multilayered hybrid coatings consisting of alternate layers of reduced graphene oxide (rGO) nanosheets and a novel high amorphous vinyl alcohol (HAVOH) with zirconium (Zr) adducts as binders were successfully fabricated through a layer-by-layer (LbL) assembly approach. Atomic force microscopy analysis showed that rGO nanoplatelets were uniformly dispersed over the HAVOH polymer substrate. Scanning and transmission electron microscopies revealed that multilayer (HAVOH/Zr/rGO)(n) hybrid coatings exhibited a brick-wall structure with HAVOH and rGO as buildings blocks. It has been shown that 40 layers of HAVOH/Zr/rGO ultrathin films deposited on PET substrates lead to a decrease of 1 order of magnitude of oxygen permeability with respect to the pristine PET substrate. This is attributed to the effect of zirconium polymeric adducts, which enhance the assembling efficiency of rGO and compact the layers, as confirmed by NMR characterization, resulting in a significant increment of the oxygen-transport pathways. Because of their high barrier properties and high flexibility, these films are promising candidates in a variety of applications such as packaging, selective gas films, and protection of flexible electronics.
机译:在最近的文献中已经研究了通过涂覆聚对苯二甲酸乙二醇酯(PET)基底获得的阻气材料。然而,由于使用便宜,可生物降解的非极性聚合物的好处,多层杂化涂层由交替的还原性氧化石墨烯(rGO)纳米片层和新型高无定形乙烯醇(HAVOH)与锆(Zr)加成物组成。通过逐层(LbL)组装方法成功制造。原子力显微镜分析表明,rGO纳米片均匀分散在HAVOH聚合物基质上。扫描和透射电子显微镜检查显示,多层(HAVOH / Zr / rGO)(n)杂化涂料表现出以HAVOH和rGO为砌块的砖墙结构。已经显示出,沉积在PET基底上的40层HAVOH / Zr / rGO超薄膜导致相对于原始PET基底的氧渗透性降低了1个数量级。这归因于锆聚合物加合物的作用,这增强了rGO的组装效率并压实了各层,正如NMR表征所证实的那样,从而导致氧传输途径的显着增加。由于它们的高阻隔性能和高柔韧性,这些膜在各种应用(例如包装,选择性气膜和柔性电子产品的保护)中很有希望成为候选者。

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