论文标题
由水胶体制备的聚乙烯醇 - 饮料层石墨烯复合膜。机械,导电和气势屏障特性的研究
Polyvinyl Alcohol-Few Layer Graphene Composite Films Prepared from Aqueous Colloids. Investigations of Mechanical, Conductive and Gas Barrier Properties
论文作者
论文摘要
准所有水溶性复合材料都使用氧化石墨烯(GO)或氧化石墨烯(RGO)作为基于石墨烯的添加剂,尽管制备需要较长且恶劣的条件。在此,通过将水胶体和铸件共混合来制备含有几层石墨烯(FLG)的聚乙烯醇(PVA)膜,在该膜首先通过EFFCIENT,快速,简单和生物兼容的去角质方法获得FLG胶体,从而提供了相对大型FLG薄片的访问。研究并与膜的结构一起研究并讨论了增强的机械,电导率和O2屏障性能。在四个不同系列的复合材料中,最佳的年轻模量是针对含有1%FLG的1%的膜测量的。该系列的最大增强功能是最大的FLG板,与中断时的伸长率相反,该系列的伸长率对最低的FLG板的系列有很好的改进。与GO(RGO)复合材料相比,相对较高的一侧电导率和低渗透阈值(RGO)复合材料(在3%的FLG中几乎为10-3 s.cm-1,在0.5%FLG处运输),而电导率则受到宏观镜型FLG网络的形成。复合材料表明,O2传输速率的降低高达60%。
Quasi all water soluble composites use graphene oxide (GO) or reduced graphene oxide (rGO) as graphene based additives despite the long and harsh conditions required for their preparation. Herein, polyvinyl alcohol (PVA) films containing few layer graphene (FLG) are prepared by the co-mixing of aqueous colloids and casting, where the FLG colloid is first obtained via an effcient, rapid, simple, and bio-compatible exfoliation method providing access to relatively large FLG flakes. The enhanced mechanical, electrical conductivity, and O2 barrier properties of the films are investigated and discussed together with the structure of the films. In four different series of the composites, the best Young modulus is measured for the films containing around 1% of FLG. The most significant enhancement is obtained for the series with the largest FLG sheets contrary to the elongation at break which is well improved for the series with the lowest FLG sheets. Relatively high one-side electrical conductivity and low percolation threshold are achieved when compared to GO(rGO) composites (almost 10-3 S.cm-1 for 3% of FLG and transport at 0.5% FLG), while the conductivity is affected by the formation of a macroscopic branched FLG network. The composites demonstrate a reduction of O2 transmission rate up to 60%.