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Reduced graphene oxide as a water, carbon dioxide and oxygen barrier in plasticized poly(vinyl chloride) films

机译:还原的氧化石墨烯在增塑的聚氯乙烯薄膜中作为水,二氧化碳和氧气的屏障

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Herein, we report the incorporation of a 10 μm thick reduced graphene oxide (RGO) barrier layer in a plasticized poly(vinyl chloride) (PVC) film as the main constituent in ion-selective membranes used in potentiometric solid-contact ion-selective electrodes (SCISE). Fourier transform infrared attenuated total reflection (FTIR-ATR) and oxygen transmission rate (OTR) measurements showed that the embedded RGO barrier efficiently impedes the diffusion of liquid water, carbon dioxide and oxygen (O _(2) ) through the 400 μm thick PVC film, which causes potential instability and irreproducibility of the SCISEs. The measurements revealed that the RGO layer completely blocks the carbon dioxide diffusion, while it fully blocks the water diffusion for 16 h and reduced the OTR by 85% on average. The μm-thick RGO films used in this study were easier to handle and incorporate into host polymers, and form more efficient and robust barriers compared to the mono-, few- and multilayer graphene commonly applied as barrier layers for liquids and gases. We also demonstrated that the FTIR-ATR technique employed in the permeability measurements is a versatile and very sensitive technique for studying the diffusion of small amounts of water and carbon dioxide through graphene-based thin films.
机译:本文中,我们报道了在增塑的聚氯乙烯(PVC)膜中掺入10μm厚的还原氧化石墨烯(RGO)阻挡层,这是电位固体接触离子选择电极所用离子选择膜的主要成分(SCISE)。傅立叶变换红外衰减全反射(FTIR-ATR)和氧气透过率(OTR)测量表明,嵌入的RGO势垒有效地阻止了液态水,二氧化碳和氧气(O _(2))通过400μm厚的PVC扩散膜,这会导致SCISE的潜在不稳定和不可复制性。测量结果表明,RGO层完全阻止了二氧化碳的扩散,而它完全阻止了水的扩散16小时,平均OTR降低了85%。与通常用作液体和气体阻隔层的单层,少层和多层石墨烯相比,本研究中使用的μm厚RGO膜更易于处理并掺入主体聚合物中,并形成更有效和坚固的阻隔层。我们还证明,渗透率测量中使用的FTIR-ATR技术是一种通用且非常敏感的技术,用于研究少量水和二氧化碳通过石墨烯基薄膜的扩散。

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