School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
ACS Nano. 2010 Dec 28;4(12):7053-63. doi: 10.1021/nn102456w. Epub 2010 Nov 19.
We report on a novel assembly approach to fabricate ultrathin robust freely standing nanocomposite membranes. The materials are composed of a pre-cross-linked silk fibroin matrix with incorporated silica nanoparticles with silsesquioxane cores (POSS) or clay nanoplatelets. These reinforced silk membranes have enhanced mechanical properties as compared to traditional silk-based nanocomposites reported previously. Up to 6-fold and 8-fold increase in elastic modulus and toughness, respectively, were found for these nanocomposites. In contrast, traditional LbL-assembled nanocomposites showed only a 3-fold increase in mechanical strength. The silk nanocomposites obtained also revealed excellent optical transparency in the visible region especially if reinforced with POSS nanoparticles, which suggests their utility as low cost, nontoxic, and easily scalable reinforced biomaterials for mechanically demanding applications.
我们报告了一种新颖的组装方法,用于制造超薄坚固的自由站立纳米复合膜。这些材料由预交联丝素基质组成,其中掺入了具有硅烷核的二氧化硅纳米粒子(POSS)或粘土纳米片层。与之前报道的传统基于丝素的纳米复合材料相比,这些增强型丝素膜具有增强的机械性能。这些纳米复合材料的弹性模量和韧性分别提高了 6 倍和 8 倍。相比之下,传统的 LbL 组装纳米复合材料的机械强度仅提高了 3 倍。如果用 POSS 纳米粒子增强,所得到的丝素纳米复合材料在可见光区域也具有优异的光学透明度,这表明它们可用作低成本、无毒且易于扩展的增强型生物材料,适用于对机械性能要求较高的应用。