Department of Chemical Engineering, Feng Chia University , No. 100, Wenhwa Road, Seatwen District, Taichung 40724, Taiwan.
ACS Appl Mater Interfaces. 2014 Aug 13;6(15):13098-105. doi: 10.1021/am502962b. Epub 2014 Jul 16.
Unique two-dimensional alumina nanosheets (Alns) using graphene oxide (GO) as templates are fabricated and successfully incorporated with organo-soluble polyimide (PI) to obtain highly transparent PI nanocomposite films with improved moisture barrier property. The effects of filler types and contents on water vapor transmission rate (WVTR) and transparency of PI are systematically studied. The hydroxyl groups on GO react with aluminum isopropoxide via sol-gel process to obtain alumina coverd-GO (Al-GO), and then thermal decomposition is applied to obtain Alns. Alns are the most efficient fillers among others to restrict the diffusion of water vapor within PI matrix and simultaneously maintain the transparency of PI. XRD pattern, TEM, and AFM images confirm the sheet-like morphology of Alns with ultrahigh aspect ratio. With only 0.01 wt % of Alns, the PI nanocomposite film exhibits the most significant reduction of 95% in WVTR as compared to that of pure PI film. Most importantly, the resultant PI/Alns-0.01 film exhibits excellent optical transparency and high mechanical strength and great thermal stability.
采用氧化石墨烯(GO)为模板,制备了独特的二维氧化铝纳米片(Alns),并成功地与可溶有机聚酰亚胺(PI)结合,得到了具有高透光率和改善的防潮性能的 PI 纳米复合材料薄膜。系统研究了填料类型和含量对 PI 的水蒸气透过率(WVTR)和透光率的影响。GO 上的羟基与异丙醇铝通过溶胶-凝胶过程反应,得到氧化铝包覆的 GO(Al-GO),然后进行热分解得到 Alns。Alns 是最有效的填料之一,能够限制水蒸气在 PI 基体中的扩散,同时保持 PI 的透光率。XRD 图谱、TEM 和 AFM 图像证实了 Alns 的片状形态和超高纵横比。仅添加 0.01wt%的 Alns,PI 纳米复合材料薄膜的 WVTR 降低了 95%,与纯 PI 薄膜相比降幅最大。最重要的是,所得的 PI/Alns-0.01 薄膜具有优异的光学透明度、高机械强度和良好的热稳定性。