Tokudome Yasuaki, Hara Takaaki, Abe Risa, Takahashi Masahide
Department of Materials Science, Graduate School of Engineering, Osaka Prefecture University , Sakai, Osaka 599-8531, Japan.
ACS Appl Mater Interfaces. 2014 Nov 12;6(21):19355-9. doi: 10.1021/am5054477. Epub 2014 Oct 21.
Water vapor barriers are important in various application fields, such as food packaging and sealants in electronic devices. Polymer/clay composites are well-studied water vapor barrier materials, but their transparency and mechanical strength degrade with increasing clay loading. Herein, we demonstrate films with good water vapor barrier properties, high transparency, and mechanical/thermal stability. Water vapor barrier films were prepared by the solution crystallization of siloxane hybrid lamellae. The films consist of highly crystallized organic/inorganic hybrid lamellae, which provide high transparency, hardness, and thermal stability and inhibit the permeation of water vapor. The water permeability of a 6 μm thick hybrid film is comparable to that of a 200 μm thick silicon rubber film.
水汽阻隔层在食品包装和电子设备密封剂等各种应用领域中都很重要。聚合物/粘土复合材料是经过充分研究的水汽阻隔材料,但随着粘土含量的增加,其透明度和机械强度会下降。在此,我们展示了具有良好水汽阻隔性能、高透明度以及机械/热稳定性的薄膜。水汽阻隔薄膜是通过硅氧烷杂化薄片的溶液结晶制备而成。这些薄膜由高度结晶的有机/无机杂化薄片组成,它们提供了高透明度、硬度和热稳定性,并抑制了水汽的渗透。一个6μm厚的杂化薄膜的透水性与一个200μm厚的硅橡胶薄膜相当。